{"id":265,"date":"2022-05-30T19:09:05","date_gmt":"2022-05-30T19:09:05","guid":{"rendered":"https:\/\/striresearch.si.edu\/bat-lab\/?page_id=265"},"modified":"2025-08-12T16:30:41","modified_gmt":"2025-08-12T16:30:41","slug":"publications","status":"publish","type":"page","link":"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<style>.kb-row-layout-id265_c88813-61 > .kt-row-column-wrap{align-content:start;}:where(.kb-row-layout-id265_c88813-61 > .kt-row-column-wrap) > .wp-block-kadence-column{justify-content:start;}.kb-row-layout-id265_c88813-61 > .kt-row-column-wrap{column-gap:var(--global-kb-gap-md, 2rem);row-gap:var(--global-kb-gap-md, 2rem);max-width:var(--wp--style--global--content-size);padding-top:var(--global-kb-spacing-sm, 1.5rem);padding-bottom:var(--global-kb-spacing-sm, 1.5rem);grid-template-columns:minmax(0, 1fr);}.kb-row-layout-id265_c88813-61 > .kt-row-layout-overlay{opacity:0.30;}@media all and (max-width: 1024px){.kb-row-layout-id265_c88813-61 > .kt-row-column-wrap{grid-template-columns:minmax(0, 1fr);}}@media all and (max-width: 767px){.kb-row-layout-id265_c88813-61 > .kt-row-column-wrap{grid-template-columns:minmax(0, 1fr);}}<\/style><section class=\"kb-row-layout-wrap kb-row-layout-id265_c88813-61 alignnone slideshow mb-5 wp-block-kadence-rowlayout\"><div class=\"kt-row-column-wrap kt-has-1-columns kt-row-layout-equal kt-tab-layout-inherit kt-mobile-layout-row kt-row-valign-top kb-theme-content-width\">\n<style>.kadence-column265_79e7d1-a6 > .kt-inside-inner-col,.kadence-column265_79e7d1-a6 > .kt-inside-inner-col:before{border-top-left-radius:0px;border-top-right-radius:0px;border-bottom-right-radius:0px;border-bottom-left-radius:0px;}.kadence-column265_79e7d1-a6 > .kt-inside-inner-col{column-gap:var(--global-kb-gap-sm, 1rem);}.kadence-column265_79e7d1-a6 > .kt-inside-inner-col{flex-direction:column;}.kadence-column265_79e7d1-a6 > .kt-inside-inner-col > .aligncenter{width:100%;}.kadence-column265_79e7d1-a6 > .kt-inside-inner-col:before{opacity:0.3;}.kadence-column265_79e7d1-a6{position:relative;}@media all and (max-width: 1024px){.kadence-column265_79e7d1-a6 > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}@media all and (max-width: 767px){.kadence-column265_79e7d1-a6 > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}<\/style>\n<section class=\"wp-block-kadence-column kadence-column265_79e7d1-a6 inner-column-1\"><div class=\"kt-inside-inner-col\"><style>.kb-advanced-slider-_94f498-2f .kb-slider-size-fixed .kb-advanced-slide-inner-wrap{min-height:50vh;}.kb-advanced-slider-_94f498-2f .kb-slider-pause-button{color:#fff;background-color:rgba(0, 0, 0, 0.8);border:1px solid transparent;}<\/style>\n<div class=\"wp-block-kadence-slider kb-advanced-slider kb-advanced-slider-_94f498-2f\"><div class=\"kb-advanced-slider-inner-contain\"><div class=\"kb-blocks-advanced-carousel kt-blocks-carousel kt-carousel-container-dotstyle-none\"><div class=\"kb-blocks-advanced-slider-init kb-slider-loading kb-blocks-slider kt-carousel-arrowstyle-whiteondark kt-carousel-dotstyle-none kb-slider-size-fixed kb-slider-ratio-12-5 kb-slider-tab-ratio-inherit kb-slider-mobile-ratio-inherit\" data-slider-anim-speed=\"400\" data-slider-type=\"slider\" data-slider-scroll=\"1\" data-slider-fade=\"true\" data-slider-arrows=\"true\" data-slider-dots=\"false\" data-slider-hover-pause=\"false\" data-slider-auto=\"true\" data-slider-speed=\"7000\">\n<div class=\"wp-block-kadence-slide kb-advanced-slide-item kb-slide-_1996ca-c5\"><div class=\"kb-advanced-slide\"><div class=\"kb-advanced-slide-inner-wrap\" style=\"background-image:url(https:\/\/striresearch.si.edu\/bat-lab\/wp-content\/uploads\/sites\/115\/2022\/05\/321525380-e1653939023856.jpg);background-size:cover;background-position:center center;background-repeat:no-repeat\"><div class=\"kb-advanced-slide-overlay\"><\/div><div class=\"kb-advanced-slide-inner\">\n<style>.kb-row-layout-id265_f58a5e-e3 > .kt-row-column-wrap{align-content:start;}:where(.kb-row-layout-id265_f58a5e-e3 > .kt-row-column-wrap) > .wp-block-kadence-column{justify-content:start;}.kb-row-layout-id265_f58a5e-e3 > .kt-row-column-wrap{column-gap:var(--global-kb-gap-md, 2rem);row-gap:var(--global-kb-gap-md, 2rem);padding-top:var(--global-kb-spacing-sm, 1.5rem);padding-bottom:var(--global-kb-spacing-sm, 1.5rem);grid-template-columns:minmax(0, 1fr);}.kb-row-layout-id265_f58a5e-e3 > .kt-row-layout-overlay{opacity:0.30;}@media all and (max-width: 1024px){.kb-row-layout-id265_f58a5e-e3 > .kt-row-column-wrap{grid-template-columns:minmax(0, 1fr);}}@media all and (max-width: 767px){.kb-row-layout-id265_f58a5e-e3 > .kt-row-column-wrap{grid-template-columns:minmax(0, 1fr);}}<\/style><div class=\"kb-row-layout-wrap kb-row-layout-id265_f58a5e-e3 alignnone wp-block-kadence-rowlayout\"><div class=\"kt-row-column-wrap kt-has-1-columns kt-row-layout-equal kt-tab-layout-inherit kt-mobile-layout-row kt-row-valign-top\">\n<style>.kadence-column265_3a9b50-53 > .kt-inside-inner-col,.kadence-column265_3a9b50-53 > .kt-inside-inner-col:before{border-top-left-radius:0px;border-top-right-radius:0px;border-bottom-right-radius:0px;border-bottom-left-radius:0px;}.kadence-column265_3a9b50-53 > .kt-inside-inner-col{column-gap:var(--global-kb-gap-sm, 1rem);}.kadence-column265_3a9b50-53 > .kt-inside-inner-col{flex-direction:column;}.kadence-column265_3a9b50-53 > .kt-inside-inner-col > .aligncenter{width:100%;}.kadence-column265_3a9b50-53 > .kt-inside-inner-col:before{opacity:0.3;}.kadence-column265_3a9b50-53{position:relative;}@media all and (max-width: 1024px){.kadence-column265_3a9b50-53 > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}@media all and (max-width: 767px){.kadence-column265_3a9b50-53 > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}<\/style>\n<div class=\"wp-block-kadence-column kadence-column265_3a9b50-53 inner-column-1\"><div class=\"kt-inside-inner-col\">\n<h1 class=\"has-text-align-center wp-block-post-title has-text-color has-white-color\">Publications<\/h1>\n<\/div><\/div>\n\n<\/div><\/div>\n<\/div><\/div><\/div><\/div>\n<\/div><\/div><\/div><\/div>\n<\/div><\/section>\n\n<\/div><\/section>\n\n<style>.kb-row-layout-id265_e59ed2-8e > .kt-row-column-wrap{align-content:start;}:where(.kb-row-layout-id265_e59ed2-8e > .kt-row-column-wrap) > .wp-block-kadence-column{justify-content:start;}.kb-row-layout-id265_e59ed2-8e > .kt-row-column-wrap{column-gap:var(--global-kb-gap-lg, 4rem);row-gap:var(--global-kb-gap-md, 2rem);padding-top:3px;padding-bottom:0px;grid-template-columns:minmax(0, calc(65% - ((var(--global-kb-gap-lg, 4rem) * 1 )\/2)))minmax(0, calc(35% - ((var(--global-kb-gap-lg, 4rem) * 1 )\/2)));}.kb-row-layout-id265_e59ed2-8e > .kt-row-layout-overlay{opacity:0.30;}@media all and (max-width: 1024px){.kb-row-layout-id265_e59ed2-8e > .kt-row-column-wrap{grid-template-columns:minmax(0, 2fr) minmax(0, 1fr);}}@media all and (max-width: 767px){.kb-row-layout-id265_e59ed2-8e > .kt-row-column-wrap{grid-template-columns:minmax(0, 1fr);}}<\/style><section class=\"kb-row-layout-wrap kb-row-layout-id265_e59ed2-8e alignnone pt-sm wp-block-kadence-rowlayout\"><div class=\"kt-row-column-wrap kt-has-2-columns kt-row-layout-left-golden kt-tab-layout-inherit kt-mobile-layout-row kt-row-valign-top\">\n<style>.kadence-column265_d84ab6-9e > .kt-inside-inner-col,.kadence-column265_d84ab6-9e > .kt-inside-inner-col:before{border-top-left-radius:0px;border-top-right-radius:0px;border-bottom-right-radius:0px;border-bottom-left-radius:0px;}.kadence-column265_d84ab6-9e > .kt-inside-inner-col{column-gap:var(--global-kb-gap-sm, 1rem);}.kadence-column265_d84ab6-9e > .kt-inside-inner-col{flex-direction:column;}.kadence-column265_d84ab6-9e > .kt-inside-inner-col > .aligncenter{width:100%;}.kadence-column265_d84ab6-9e > .kt-inside-inner-col:before{opacity:0.3;}.kadence-column265_d84ab6-9e{position:relative;}@media all and (max-width: 1024px){.kadence-column265_d84ab6-9e > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}@media all and (max-width: 767px){.kadence-column265_d84ab6-9e > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}<\/style>\n<div class=\"wp-block-kadence-column kadence-column265_d84ab6-9e inner-column-1\"><div class=\"kt-inside-inner-col\">\n<p><strong>2025<\/strong><br>Christiano BM, Weikel MM, James LS, Ryan MJ, Page RA. 2025. Ripeness preferences in Seba&#8217;s short tailed-fruit bats, <em>Carollia perspicillata<\/em>. <em>Acta Chiropterologica<\/em>. 27: 75-83. https:\/\/doi.org\/10.3161\/15081109ACC2025.27.1.007.<\/p>\n\n\n\n<p>G\u00f3mez-Feuillet LF, O\u2019Mara MT, Page RA. 2025. <em>Leptodactylus savagei<\/em> (Savage\u2019s thin-toed frog). Diet. <em>Herpetological Review<\/em>.<\/p>\n\n\n\n<p>James LS, O\u2019Mara MT, Touchon JC, Ryan MJ, Bernal XE, Page RA. 2025. The ontogeny of predatory response behavior in an eavesdropping bat. <em>Proceedings of the Royal Society B<\/em>. 292: 20250450. doi: 10.1098\/rspb.2025.0450.<\/p>\n\n\n\n<p>Leavell BC, Aparicio D, Pantoja-S\u00e1nchez H, Page RA, Bernal XE. 2025. Variation in sexual signals and defensive strategies elicits receiver-dependent shifts in attractiveness. Journal of Experimental Biology. 228: 10.1242\/jeb.250360.<\/p>\n\n\n\n<p>Mu\u00f1oz-Romo M, Cohen G, Page RA. 2025. Actual folivory in bats: whole leaves as a formerly dismissed trophic item and a potential avenue for self-medication. <em>Behaviour<\/em>. doi:10.1163\/1568539X-bja10297.<\/p>\n\n\n\n<p><strong>2024<\/strong><br>Carter GG, Ripperger SP, Girbino V, Razik I, Dixon MM, Page RA, Hobson E. 2024. Long-term cooperative relationships among vampire bats are not strongly predicted by their initial interactions. <em>Annals of the New York Academy of Sciences<\/em>. doi: 10.1111\/nyas.15241.<\/p>\n\n\n\n<p>Chaverri G, Page RA. 2024. Food-associated calls in disc-winged bats. <em>Behavioral Ecology and Sociobiology<\/em>. 78: 119. doi:10.1007\/s00265-024-03534-8.<\/p>\n\n\n\n<p>Heckley AM, Tilley HB, Page RA, Klein BA, Yovel Y, Harding CD, Diebold CA. 2024. The effect of group size on sleep in the Neotropical bat, <em>Artibeus jamaicensis<\/em>. In special issue: Comparative perspectives of sleep and circadian rhythms. Ed J Lesku. <em>Journal of Experimental Zoology Part A: Ecological and Integrative Physiology. <\/em>doi: 10.1002\/jez.2860.<\/p>\n\n\n\n<p>Kohles JE, Page RA, Wikelski M, Dechmann DKN. 2024. Severe seasonal shifts in insect ephemerality drive bat foraging effort. <em>Current Biology<\/em>. doi: 10.1016\/j.cub.2024.05.074.<\/p>\n\n\n\n<p>Sealey BA, James LS, Cohen G, Ryan MJ, Page RA. 2024. Rapid foraging risk-assessments in the Jamaican fruit eating bat, <em>Artibeus jamaicensis<\/em>. <em>Animal Behaviour<\/em>. 216: 45-53.<\/p>\n\n\n\n<p>Bernal XE, Leavell BC, Page RA. 2023. Assessing patterns of eavesdropper risk on sexual signals and the use of meta-analysis in behavioural ecology: a comment on: \u2018The exploitation of sexual signals by predators: a meta-analysis\u2019 White et al. (2022). <em>Proceedings of the Royal Society B<\/em>. 290: 20221866. doi: 10.1098\/rspb.2022.1866.<\/p>\n\n\n\n<p><strong>2023<\/strong><\/p>\n\n\n\n<p>Amichai E, Boerma DB, Page, RA, Swartz S, ter Hofstede HM. 2023. By a whisker: the sensory role of vibrissae in hovering-flight in nectarivorous bats. <em>Proceedings of the Royal Society B<\/em>. 290: 20222085. doi: 10.1098\/rspb.2022.2085.<\/p>\n\n\n\n<p>Bernal XE, Page RA. 2023. Tactics of evasion: strategies used by signallers to deter eavesdropping enemies from exploiting communication systems. <em>Biological Reviews<\/em>. doi: 10.1111\/brv.12904.<\/p>\n\n\n\n<p>Dixon MM, Carter GG, Ryan MJ, Page RA. 2023. Spatial learning overshadows learning novel odors and sounds in both predatory and frugivorous bats. <em>Behavioral Ecology and Sociobiology<\/em>. arad001. doi: 10.1093\/beheco\/arad001.<\/p>\n\n\n\n<p>Page RA, Dechmann DKN, O&#8217;Mara MT, Tschapka M. 2023. Text to accompany a book of photography by <a href=\"https:\/\/christianziegler.photography\/\" target=\"_blank\" rel=\"noreferrer noopener\">Christian Ziegler.<\/a> Bat Island: A Rare Journey into the Hidden World of Tropical Bats. San Rafael, CA: Insight Editions. On <a href=\"https:\/\/www.amazon.com\/Bat-Island-Journey-Hidden-Tropical\/dp\/B0C1KQDGZ5\" target=\"_blank\" rel=\"noreferrer noopener\">Amazon<\/a>.<\/p>\n\n\n\n<p><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_16fcd3-81, .wp-block-kadence-advancedheading.kt-adv-heading265_16fcd3-81[data-kb-block=\"kb-adv-heading265_16fcd3-81\"]{font-style:normal;color:#006a3a;}.wp-block-kadence-advancedheading.kt-adv-heading265_16fcd3-81 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_16fcd3-81[data-kb-block=\"kb-adv-heading265_16fcd3-81\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_16fcd3-81 wp-block-kadence-advancedheading\" data-kb-block=\"kb-adv-heading265_16fcd3-81\">2022<\/h2>\n\n\n\n<p>Cvecko, P, Br\u00e4ndel, S, Hiller, T, Bechler, J, Page, RA, Tschapka, M. 2022. New architecture of leaf-tents in American oil palms (<em>Elaeis oleifera<\/em>) used by the Pacific tent-making bat (<em>Uroderma convexum<\/em>) in Panama.&nbsp;<em>Mammalia.&nbsp;<\/em>doi: 10.1515\/mammalia-2021-0058.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2022_cvecko_et_al_mammalia_-_new_leaf-tent_architecture.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Larter L, Bernal XE, Page RA, Ryan MJ. Local competitive environment and male condition influence within-bout calling patterns in t\u00fangara frogs.&nbsp;<em>Bioacoustics<\/em>. 10.1080\/09524622.2022.2070544.<\/p>\n\n\n\n<p>Mu\u00f1oz-Romo M, Cohen G, Page RA. 2022. Place your bets: a small prey faces large predators. Behaviour. doi: 10.1163\/1568539X-bja10157.&nbsp;<em><a href=\"https:\/\/www.nytimes.com\/2022\/04\/13\/science\/bats-bullies-slap.html\" target=\"_blank\" rel=\"noreferrer noopener\">Coverage by the New York Times<\/a>.&nbsp;<\/em><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2022_munoz-romo_et_al_behaviour-_carollia_aggression_toward_trachops.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Mu\u00f1oz-Romo M, Page RA, Vilar EM, Dewynter M, Lim BK. 2022. Revealing hidden sexually dimorphic male traits in the little white-shouldered bat,&nbsp;<em>Ametrida centurio<\/em>&nbsp;Gray 1847 (Chiroptera: Phyllostomidae).&nbsp;<em>Mammalian Biology<\/em>. doi: 10.1007\/s42991-022-00227-5.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2022_munoz-romo_et_al_mamm_biol_-_sexual_dimorphism_ametrida_centurio.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_f86690-93, .wp-block-kadence-advancedheading.kt-adv-heading265_f86690-93[data-kb-block=\"kb-adv-heading265_f86690-93\"]{font-style:normal;color:#006a3a;}.wp-block-kadence-advancedheading.kt-adv-heading265_f86690-93 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_f86690-93[data-kb-block=\"kb-adv-heading265_f86690-93\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_f86690-93 mt-5 wp-block-kadence-advancedheading\" data-kb-block=\"kb-adv-heading265_f86690-93\">2021<br><\/h2>\n\n\n\n<p>Brokaw, AF, Davis, E, Page, RA, Smotherman, M. 2021 Flying bats use serial sampling to locate odour sources.&nbsp;<em>Biology Letters<\/em>. 17, 20210430. doi: 10.1098\/rsbl.2021.0430.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_brokaw_et_al_biol_letters_-_ajs_serial_sampling_to_find_odor_source.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Gessinger G, Page RA, Wilfert L, Surlykke A, Brinkl\u00f8v S, Tschapka M. Phylogenetic patterns in mouth posture and echolocation emission behavior of phyllostomid bats.<em>&nbsp;Frontiers in Ecology and Evolution.&nbsp;<\/em>9. doi: 10.3389\/fevo.2021.630481.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_gessinger_et_al_frontiers_ecol_evol_-_open_closed_mouth_echolocation_phyllostomids.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Geipel I, Lattenkamp EZ, Dixon MM, Wiegrebe L, Page RA. 2021. Hearing sensitivity: an underlying mechanism for niche differentiation in gleaning bats.&nbsp;<em>Proceedings of the National Academy of Sciences<\/em>. 118, e2024943118.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_geipel_et_al_pnas_hearing_sensitivity_niche_differentiation.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hemingway, CT, Aversa J, Ryan MJ, Page RA. 2021. Context-dependent preferences in wild fruit bats.&nbsp;<em>Animal Behaviour<\/em>. doi: 10.1016\/j.anbehav.2021.06.016.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_hemingway_et_al_anim_beh_-_context-dependent_pref_in_ajs.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hiller T, Vollst\u00e4dt MGR, Br\u00e4ndel SD, Page RA, Tschapka M. 2021. Bat\u2013bat fly interactions in Central Panama: host traits relate to modularity in a highly specialized network.&nbsp;<em>Insect Conservation and Diversity<\/em>. doi: 10.1111\/icad.12508.&nbsp;<a rel=\"noreferrer noopener\" href=\"http:\/\/www.noseleaf.org\/uploads\/5\/1\/0\/8\/51080453\/2021_hiller_et_al_ins_conserv_div_-_bat-bat_fly_interactions_in_central_panama.pdf\" target=\"_blank\">PDF<\/a><\/p>\n\n\n\n<p>James LS, Halfwerk W, Hunter KL, Page RA, Taylor RC, Wilson PS, Ryan MJ. 2021. Covariation among multimodal components in the t\u00fangara frog\u2019s courtship display.&nbsp;<em>The Journal of Experimental Biology.&nbsp;<\/em>224. doi: 10.1242\/jeb.241661.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_james_et_al_jeb_-_covariation_tungara_courship_display.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Mu\u00f1oz-Romo M, Page RA, Kunz TH. 2021. Redefining the study of sexual dimorphism in bats: following the odour trail.&nbsp;<em>Mammal Review<\/em>. doi:&nbsp;10.1111\/mam.12232.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_munoz-romo_et_al_mammal_review_-_following_the_odor_trail.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA, ter Hofstede HM. 2021. Sensory and cognitive ecology of bats.&nbsp;<em>Annual Review of Ecology, Evolution, and Systematics<\/em>. doi: 10.1146\/annurev-ecolsys-012921-052635.&nbsp;<a rel=\"noreferrer noopener\" href=\"http:\/\/www.annualreviews.org\/eprint\/R5UM7ZZAFQJUBSZGPH9T\/full\/10.1146\/annurev-ecolsys-012921-052635\" target=\"_blank\">PDF<\/a><\/p>\n\n\n\n<p>Razik I, Brown BKG, Page RA, Carter GG. 2021. Non-kin adoption in the common vampire bat.&nbsp;<em>Royal Society Open Science<\/em>. doi: 10.1098\/rsos.201927.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_razik_et_al_roy_soc_open_sci_-_vampire_bat_adoption.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Taylor RC, Wilhite KO, Ludovici RJ, Mitchell KM, Halfwerk W, Page RA, Ryan MJ, Hunter KL. 2021. Complex sensory environments alter mate choice outcomes.&nbsp;<em>The Journal of Experimental Biology<\/em>&nbsp;224: jeb233288.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021_taylor_et_al_jeb_complex_sensory_environments_alter_mate_choice_outcomes.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_97f214-c5, .wp-block-kadence-advancedheading.kt-adv-heading265_97f214-c5[data-kb-block=\"kb-adv-heading265_97f214-c5\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_97f214-c5 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_97f214-c5[data-kb-block=\"kb-adv-heading265_97f214-c5\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_97f214-c5 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_97f214-c5\">2020<\/h2>\n\n\n\n<p>Br\u00e4ndel SD, Hiller T, Halczok TK, Kerth G, Page RA, Tschapka M. 2020. Consequences of fragmentation for Neotropical bats: The importance of the matrix.&nbsp;<em>Biological Conservation<\/em>. 252: 108792.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_brandel_et_al_-_biol_conserv_-_consequences_of_fragmentation.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Brown BKG, Leffer L, Valverde Y, Toshkova N, Nystrom J, Page RA, Carter GG. 2020. Do bats use guano and urine stains to find new roosts? Tests with three group-living bats.&nbsp;<em>Royal Society Open Science<\/em>. 7: 201055. doi: 10.1098\/rsos.201055.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_brown_et_al_-_roy_soc_open_sci_-_do_bats_use_guano_urine_in_roost_finding.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Carter GG, Farine DR, Crisp RJ, Vrtilek JK, Ripperger SP, Page RA. 2020. Development of new food-sharing relationships in vampire bats.&nbsp;<em>Current Biology<\/em>. 30: 1275-1279. e1273. doi: 10.1016\/j.cub.2020.01.055.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_carter_et_al_curr_biol_-_development_of_new_food_sharing_relationships.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Flores V, Carter GG, Halczok TK, Kerth G, Page RA. 2020. Social structure and relatedness in the fringe-lipped bat (<em>Trachops cirrhosus<\/em>).&nbsp;<em>Royal Society Open Science<\/em>. 7: 192256. doi: 10.1098\/rsos.192256.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_flores_et_al_roy_soc_open_sci_-_trachops_social_structure_and_relatedness.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Geipel I*, Kernan CE*, Litterer AS, Carter GG, Page RA#, ter Hofstede HM#. *Co-first authors; #Co-last authors. 2020. Predation risks of signalling and searching: bats prefer moving katydids.&nbsp;<em>Biology Letters<\/em>. 16: 20190837. doi: 0.1098\/rsbl.2019.0837.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_geipel_et_al_biology_letters_-_prey_movement.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hemingway C, Dixon MM, Page RA. 2020. The omnivore\u2019s dilemma: the paradox of the generalist predators. In:&nbsp;Phyllostomid Bats, a Unique Mammalian Radiation&nbsp;(editors: TH Fleming, L Davalos, M Mello). University of Chicago Press.<\/p>\n\n\n\n<p>Hemingway CT, Ryan MJ, Page RA. 2020. State-dependent learning influences foraging behaviour in an acoustic predator.&nbsp;<em>Animal Behaviour<\/em>. 163: 33-38.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_hemingway_et_al_anim_beh_-_state_dependent_learning.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hermanns K, Marklewitz M, Zirkel F, Overheul GJ, Page RA, Loaiza JR, Drosten C, van Rij RP, Junglen S. 2020. Agua Salud alphavirus defines a novel lineage of insect-specific alphaviruses discovered in the New World.&nbsp;<em>Journal of General Virology.<\/em>&nbsp;101: 96-104.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_hermanns_et_al_j_gen_virology_-_agua_salud_alphavirus.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hiller T, Br\u00e4ndel SD, Honner B, Page RA, Tschapka M. 2020. Parasitization of bats by bat flies (Streblidae) in fragmented habitats.&nbsp;<em>Biotropica.<\/em>&nbsp;52: 488\u2013501. doi: 10.1111\/btp.12757. <a href=\"http:\/\/2020_hiller_et_al_biotropica_-_parasitization_of_bats_by_bat_flies_in_fragmented_areas\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_2ef28e-e1, .wp-block-kadence-advancedheading.kt-adv-heading265_2ef28e-e1[data-kb-block=\"kb-adv-heading265_2ef28e-e1\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_2ef28e-e1 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_2ef28e-e1[data-kb-block=\"kb-adv-heading265_2ef28e-e1\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_2ef28e-e1 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_2ef28e-e1\">2019<\/h2>\n\n\n\n<p>Berr\u00edo-Mart\u00ednez J, Kaiser S, Nowak M, Page RA, Carter GG. 2019. The role of past experience in development of feeding behavior in common vampire bats.&nbsp;<em>PeerJ<\/em>. 7:e7448.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_berrio-martinez_et_al_peer_j_-_role_of_experience_-_naive_vampires_feeding_on_chickens.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Cronin AD, Ryan MJ, Page RA, Hunter KL, Taylor RC. 2019. Environmental heterogeneity alters mate choice behavior for multimodal signals.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. 73:43.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_cronin_et_al_beas_-_environmental_heterogeneity_alters_mate_choice.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Dixon MM, Hulgard K, Ratcliffe JM*, Page RA*. 2019. Habituation as an indicator of ecological relevance: Insights into the foraging ecology of a frog-eating bat. *Ratcliffe and Page contributed equally to this work.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. 73:101. doi: 10.1007\/s00265-019-2700-1.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_dixon_et_al_beas_-_attention.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Flores EE, Batista A, Rodr\u00edguez V, Page RA. 2019. Vicente&#8217;s poison frog (<em>Oophaga vicentei<\/em>) in the wild: calling activity, bioacoustics and diet.&nbsp;<em>The Herpetological Bulletin<\/em>. 149: 11-17.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_flores_et_al_herpetological_bulletin_-_vincents_poison_frog_calling_activity_bioacoustics_and_diet.pdf\">PDF<\/a>.<\/p>\n\n\n\n<p>Flores E, Page RA, Aparicio D. 2019.&nbsp;<em>Pristimantis moro<\/em>.&nbsp;<em>Herpetological Review<\/em>. 50: 97-98.<\/p>\n\n\n\n<p>Flores V, Mateo JM, Page RA. 2019. The role of male forearm crust odor in fringe-lipped bats (<em>Trachops cirrhosus<\/em>).&nbsp;<em>Behaviour<\/em>. doi: 10.1163\/1568539X-00003573.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_flores_et_al_beh_-_crust_chemical_composition_and_y-maze_pref_tests.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Geipel I*, Amin B*, Page RA\u2020, Halfwerk W\u2020. (2019) Does bat response to traffic noise support the misleading cue hypothesis?&nbsp;<em>Behavioral Ecology<\/em>. 10.1093\/beheco\/arz148. *Joint first authors; \u2020Joint senior authors.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_geipel_et_al_beh_ecol_-_traffic_noise_roost_emergence.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Geipel I, Smeekes MJ, Halfwerk W, Page RA. 2019. Noise as an informational cue for decision-making: the sound of rain delays bat emergence.&nbsp;<em>The Journal of Experimental Biology<\/em>. jeb.192005.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_geipel_et_al_jeb_-_rain_noise_delays_bat_emergence_micronycteris_-_molossus.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Gessinger G*, Gonzalez-Terrazas T*, Page RA, Jung K, Tschapka M. 2019. Unusual echolocation behaviour of the common sword-nosed bat&nbsp;<em>Lonchorhina aurita<\/em>: an adaptation to aerial insectivory in a phyllostomid bat? *Gessinger and Gonzalez-Terrazas contributed equally to this work.&nbsp;<em>Royal Society Open Science<\/em>. doi: 0.1098\/rsos.182165.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_gessinger_et_al_-_rsos_lonchorhina_aurita_unusual_echolocation.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hemingway CT, Lea AM, Page RA, Ryan MJ. 2019. Effects of information load on response times in frogs and bats: mate choice vs. prey choice.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. 73: 111.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_hemingway_et_al_bes_-_effects_of_info_load_on_response_time_in_bats_and_frogs.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hemingway CT, Ryan MJ, Page, RA. 2019. Transitive foraging behaviour in frog-eating bats.&nbsp;<em>Animal Behaviour<\/em>. 154: 47-55. doi: 10.1016\/j.anbehav.2019.05.005.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_hemingway_et_al_anim_behav_-_transitive_foraging_behav.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Legett HD, Page RA, Bernal XE. 2019<em>.<\/em>&nbsp;Synchronized mating signals in a communication network: the challenge of avoiding predators while attracting mates.&nbsp;<em>Proceedings of the Royal Society B<\/em>. 286. doi: 10.1098\/rspb.2019.1067.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_legett_et_al_proc_roy_soc_sychronized_mating_calls_smilisca.pdf\">PDF<\/a>.<\/p>\n\n\n\n<p>Marklewitz M, Dutari LC, Paraskevopoulou S, Page RA, Loaiza JR, Junglen S. 2019. Diverse novel phleboviruses in sandflies from the Panama Canal area, Central Panama.&nbsp;<em>Journal of General Virology<\/em>. 100: 938-949.<\/p>\n\n\n\n<p>Ripperger SP, Carter GG, Duda N, Koelpin A, Cassens B, Kapitza R, Josic D, Berr\u00edo-Mart\u00ednez J, Page RA, Mayer F. 2019. Vampire bats that cooperate in the lab maintain their social networks in the wild.&nbsp;<em>Current Biology<\/em>. 10.1016\/j.cub.2019.10.024.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_ripperger_et_al_current_biology_-_vampire_bats_maintain_relationships_across_contexts.pdf\">PDF<\/a>.<\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_94f863-58, .wp-block-kadence-advancedheading.kt-adv-heading265_94f863-58[data-kb-block=\"kb-adv-heading265_94f863-58\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_94f863-58 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_94f863-58[data-kb-block=\"kb-adv-heading265_94f863-58\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_94f863-58 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_94f863-58\">2018<\/h2>\n\n\n\n<p>Carter GC, Forss S, Page RA, Ratcliffe JM. 2018. Younger vampire bats (<em>Desmodus rotundus<\/em>) are more likely to explore novel objects.&nbsp;<em>PLOS One<\/em>. 13(5): e0196889. https:\/\/doi.org\/10.1371\/journal.pone.0196889.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_carter_et_al_plos_one_young_vampires_explore_more.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Estrada-Villegas S, Halczok TK, Tschapka M, Page RA, Br\u00e4ndel SD, Hiller T. 2018. Updated survey of the bats of Coiba National Park, Panama and their associated ectoparasites.&nbsp;<em>Acta Chiropterologica<\/em>. 20: 161\u2013176. doi: 10.3161\/15081109ACC2018.20.1.012.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_estrada-villegas_et_al_acta_chiro_coiba.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Haelewaters D, Page RA, Pfister, D. 2018. Parasites of parasites of bats: morphological and molecular diversity of Laboulbeniales fungi associated with ectoparasite bat flies (Diptera: Nycteribiidae, Streblidae).&nbsp;<em>Ecology and Evolution<\/em>. doi: 0.1002\/ece3.4359.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_haelewaters_et_al_ecol_evol_-_laboulbeniales_hyperparasites_of_bat_flies.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Halfwerk W, Blaas M, Kramer L, Hijner N, Trillo PA, Bernal XE, Page RA, Goutte S, Ryan MJ, Ellers J. 2018. Adaptive changes in sexual signaling in response to urbanization.&nbsp;<em>Nature Ecology &amp; Evolution<\/em>. doi:10.1038\/s41559-018-0751-8.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_halfwerk_et_al_nature_ecol_evol_-_frog_citisex.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Halczok TK, Flores V, Br\u00e4ndel SD, Puechmaille SJ, Tschapka M, Page RA, Kerth G. 2018. Male-biased dispersal and the potential impact of human-induced habitat modifications on the Neotropical bat&nbsp;<em>Trachops cirrhosus. Ecology and Evolution.&nbsp;<\/em>doi: 10.1002\/ece3.4161.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_halczok_et_al_ecol_evol_-_trachops_male-biased_dispersal.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hemingway CT, Ryan MJ, Page RA. 2018. Cognitive constraints on optimal foraging in frog-eating bats.&nbsp;<em>Animal Behaviour<\/em>. 143: 43-50. doi: 10.1016\/j.anbehav.2018.07.007.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_hemingway_et_al_anim_beh_-_cogn_constraints_chorus_size.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hiller T, Honner B, Page RA, Tschapka M. 2018. Leg structure explains host site preference in bat flies (Diptera: Streblidae) parasitizing neotropical bats (Chiroptera: Phyllostomidae).&nbsp;<em>Parasitology<\/em>. 1\u20138. doi: 10.1017\/S0031182018000318.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_hiller_et_al_parasitology_-_bat_fly_ecomorphology.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hiller T, Rasche A, Br\u00e4ndel SD, K\u00f6nig A, Jeworowski L, O\u2019Mara MT, Cottontail V, Page RA, Glebe D, Drexler JF, Tschapka M. 2018. Host biology and anthropogenic factors affect hepadnavirus infection in a Neotropical bat.&nbsp;<em>EcoHealth<\/em>, 1-13. doi: 10.1007\/s10393-018-1387-5.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_hiller_et_al_ecohealth_-_uroderma_hepadnavirus.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Kohles JE, Page RA, Dechmann DKN, O&#8217;Mara MT (2018) Rapid behavioral changes during early development in Peters&#8217; tent-making bat (<em>Uroderma bilobatum<\/em>).&nbsp;<em>PLoS ONE<\/em>&nbsp;13(10): e0205351. doi: 10.1371\/journal.pone.0205351.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_kohles_et_al_plos_one_uroderma_mother-pup.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Miller AJ, Page RA, Bernal XE. 2018<em>.&nbsp;<\/em>Exploratory behavior of a native anuran species with high invasive potential.&nbsp;<em>Animal Cognition<\/em>. 21: 55-65. doi: 10.1007\/s10071-017-1138-y.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_miller_et_al_anim_cogn_-_cane_toad_exploration_native_range.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA. 2018. Leveling the playing field: Comparative cognition studies in bats. Box in book chapter by Y Yovel, S Greif. Bat cognition. In:&nbsp;Field and Laboratory Methods in Animal Cognition&nbsp;(editors: F Amici, N Bueno-Guerra). Cambridge University Press.<\/p>\n\n\n\n<p>Patriquin KJ, Kohles J, Page RA*, Ratcliffe JM*. 2018. Bats without borders: predators learn novel prey cues from other predatory species.&nbsp;<em>Science Advances<\/em>. 4: eaaq0579. *Page and Ratcliffe contributed equally to this work.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_patriquin_et_al_science_advances_-_bats_without_borders.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Ryan MJ, Page RA, Hunter KL, Taylor RC. 2018. \u201cCrazy love\u201d\u2014nonlinearity and irrationality in mate choice. Invited contribution to Cognitive Ecology issue of&nbsp;<em>Animal Behaviour<\/em>&nbsp;(eds JM Ratcliffe, R Dukas). doi: 10.1016\/j.anbehav.2018.04.004.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_ryan_et_al_anim_behav_-_crazy_love.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Schmid J, Rasche A, Eibner G, Jeworowski L, Page RA, Corman VM, Drosten C, Sommer S. 2018. Ecological drivers of Hepacivirus infection in a neotropical rodent inhabiting landscapes with various degrees of human environmental change.&nbsp;<em>Oecologia<\/em>. doi: 10.1007\/s00442-018-4210-7.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_schmid_et_al_oecologia_-_spiny_rats.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Stockmaier, S, Bolnick, DI, Page, RA, Carter, GG. 2018. An immune challenge reduces social grooming in vampire bats.&nbsp;<em>Animal Behaviour<\/em>. 140: 141-149. https:\/\/doi.org\/10.1016\/j.anbehav.2018.04.021.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_stockmaier_et_al_anim_behav_-_sickness_reduced_grooming.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Symes L, Martinson S, H\u00f6ger L-O, Page RA, ter Hofstede HM. 2018. Effects of predator cues on prey signaling behavior: bat echolocation and katydid calls in the Neotropical forest canopy.&nbsp;<em>Frontiers in Ecology and Evolution<\/em>. 6:227. doi: 10.3389\/fevo.2018.00227.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_symes_et_al_frontiers_ecol_evol_-_understory_to_canopy_katydid_response_to_bats.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Vrtilek J, Carter GG, Patriquin KJ, Page RA*, Ratcliffe JR*. 2018. New method for rapid testing of social learning in vampire bats.&nbsp;<em>Royal Society Open Science<\/em>. *Page and Ratcliffe contributed equally to this work. 5: 172483. doi: 10.1098\/rsos.172483.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_vrtilek_et_al_roy_soc_open_sci_-_socila_learning_vampire_exits.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Wasimuddin, Br\u00e4ndel SD, Tschapka M, Page RA, Rasche A, Corman VM, Drosten C, Sommer S. 2018. Astrovirus infections induce age-dependent dysbiosis in gut microbiomes of bats.&nbsp;<em>ISME<\/em>. doi:10.1038\/s41396-018-0239-1.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_wasimuddin_isme_artibeus_jamaicensis_astrovirus_microbiome.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_1bce91-1d, .wp-block-kadence-advancedheading.kt-adv-heading265_1bce91-1d[data-kb-block=\"kb-adv-heading265_1bce91-1d\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_1bce91-1d mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_1bce91-1d[data-kb-block=\"kb-adv-heading265_1bce91-1d\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_1bce91-1d wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_1bce91-1d\">2017<\/h2>\n\n\n\n<p>Carter GG, Wilkinson GS, Page RA. 2017. Food-sharing vampire bats are more nepotistic under conditions of perceived risk.&nbsp;<em>Behavioral Ecology<\/em>. doi: 10.1093\/beheco\/arx006.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_carter_et_al_-_beh_ecol_-_caged_bars.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Flores EE, Page RA, Cisneros I, Rodriguez S. 2017.&nbsp;<em>Oophaga vicentei<\/em>&nbsp;(Vicente\u00b4s Poison Frog). Color change.&nbsp;<em>Herpetological Review<\/em>. 8: 166-167.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_flores_et_al_-_herp_review_-_oophaga_vicentei_color_change.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Flores V, Page RA. 2017. Novel odorous crust on the forearm of reproductive male fringe-lipped bats (<em>Trachops cirrhosus<\/em>).&nbsp;<em>Journal of Mammalogy<\/em>. 98: 1568-1577. doi: 10.1093\/jmammal\/gyx137.&nbsp;PDF, Nature Research Highlights&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_flores___page_-_nature_research_highlights.jpg\" rel=\"lightbox-0\">PDF<\/a><\/p>\n\n\n\n<p>Gomes DGE, Halfwerk W, Taylor RC, Ryan MJ, Page RA. 2017. Multimodal weighting differences by bats and their prey: probing natural selection pressures on sexually selected traits.<em>&nbsp;Animal Behaviour<\/em>. doi: 10.1016\/j.anbehav.2017.10.011.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_gomes_et_al_anim_beh_-_signal_weighting.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Hemingway C, Ryan MJ, Page RA. 2017. Rationality in decision-making in the fringe-lipped bat,&nbsp;<em>Trachops cirrhosus<\/em>.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. 71: 94. doi: 10.1007\/s00265-017-2321-5.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_hemingway_et_al_bes_-_rationality_in_decision-making.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Jones PL, H\u00e4msch F, Page RA, Kalko EKV, O\u2019Mara MT. 2017. Foraging and roosting behavior of the fringe-lipped,&nbsp;<em>Trachops cirrhosus<\/em>, on Barro Colorado Island, Panam\u00e1.&nbsp;<em>Acta Chiropterologica<\/em>. 19: 337-346. doi: 10.3161\/15081109ACC2017.19.2.010.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_jones_et_al_acta_chiropterologica_-_trachops_telemetry.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Taylor RC, Page RA, Klein BA, Ryan MJ, Hunter KL. 2017. Perceived synchrony of frog multimodal signal components is influenced by content and order.&nbsp;<em>Integrative and Comparative Biology<\/em>. doi: 10.1093\/icb\/icx027.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_taylor_et_al_-_int_comp_biol_-_perceived_synchrony.pdf\">PDF<\/a><\/p>\n\n\n\n<p>ter Hofstede HM, Voigt-Heucke SL, Lang A, R\u00f6mer H, Page RA, Faure PA, Dechmann DKN. 2017. Revisiting adaptations of Neotropical katydids (Orthoptera: Tettigoniidae) to gleaning bat predation.&nbsp;<em>Neotropical Biodiversity<\/em>. 3: 41-49. doi: 10.1080\/23766808.2016.1272314.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_ter_hofstede_et_al_neo_biodiv_-_m._hirsuta_culled_remains.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_ee6d81-4d, .wp-block-kadence-advancedheading.kt-adv-heading265_ee6d81-4d[data-kb-block=\"kb-adv-heading265_ee6d81-4d\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_ee6d81-4d mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_ee6d81-4d[data-kb-block=\"kb-adv-heading265_ee6d81-4d\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_ee6d81-4d wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_ee6d81-4d\">2016<\/h2>\n\n\n\n<p>Gomes DGE, Page RA, Geipel I, Taylor RC, Ryan MJ, Halfwerk W. 2016. Bats perceptually weight prey cues across sensory systems when hunting in noise.&nbsp;<em>Science<\/em>. 353: 1277-1280. doi: 10.1126\/science.aaf7934.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_gomes_et_al_-_science_bats_noise.pdf\">PDF<\/a>,&nbsp;Supplemental Materials&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_gomes_et_al_-_science_bats_noise_supplement.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Halfwerk W, Guerra MA, Lea AM, Page RA, Ryan MJ. 2016. Amplitude regulation in frogs reveals the ancestral state of the Lombard effect.&nbsp;<em>Behavioral Ecology<\/em>. 27: 669-676. doi: 10.1093\/beheco\/arv204.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_halfwerk_et_al_-_beh_ecol_-_lombard.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Jones PL, Page RA, Ratcliffe JM. 2016. To scream or to listen? Prey detection and discrimination in animal-eating bats. In:&nbsp;Bat Bioacoustics&nbsp;(volume editors: B Fenton and A Grinnell; series editor: A. Popper). New York: Springer. pp. 93-116.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_jones_et_al_-_to_listen_or_to_scream.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA, Jones PL. 2016. Overcoming sensory uncertainty: factors affecting foraging decisions in frog-eating bats. In:&nbsp;Perception and Cognition in Animal Communication&nbsp;(volume editors, MA Bee and CT Miller), in the book series&nbsp;Animal Signals and Communication&nbsp;(series editors: PK McGregor and VM Janik). New York: Springer.&nbsp;pp. 285-312.&nbsp;<\/p>\n\n\n\n<p>Ramakers JJC, Dechmann DKN, Page RA, O\u2019Mara MT. (2016) Frugivorous bats prefer information from novel social partners.&nbsp;<em>Animal Behaviour<\/em>. 116: 83-87.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_ramakers_et_al_-_anim_beh_-_pref_for_info_from_novel_social_partners.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Ripperger S, Josic D, Hierold M, Koelpin A, Weigel R, Hartmann M, Page RA, Mayer F. 2016. Automated proximity sensing in small vertebrates: design of miniaturized sensor nodes and first field tests in bats.&nbsp;<em>Ecology and Evolution<\/em>. 6: 2179\u20132189.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_ripperger_et_al_-_ecol_ecol_-_automated_proximity_sensing.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Stange N, Page RA, Ryan MJ, Taylor RC. 2016. Interactions between complex multisensory signal components result in unexpected mate choice responses.<em>&nbsp;Animal Behaviour<\/em>. DOI: 10.1016\/j.anbehav.2016.07.005.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_stange_et_al_-_anim_beh_-_signal_weighting_tungara.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Symes LB, Page RA, ter Hofstede HM. 2016. Effects of acoustic environment on male calling activity and timing in Neotropical forest katydids.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. 70: 1485-1495. DOI: 10.1007\/s00265-016-2157-4.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_symes_et_al_-_beas_-_katydid_timing.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Trillo PA, Bernal XE, Caldwell M, Halfwerk W, Owens M, Page RA. 2016. Collateral damage or a shadow of safety? The effects of signaling neighbors on the risks of parasitism and predation.&nbsp;<em>Proceedings of the Royal Society Series B<\/em>. 283: 20160343. http:\/\/dx.doi.org\/10.1098\/rspb.2016.0343.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_trillo_et_al_-_proc_roy_soc_-_collateral_damage.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Vencl FV, Ottens K, Dixon MM, Candler S, Bernal XE, Estrada C, Page RA. 2016. Pyrazine emission by a tropical firefly: an example of chemical aposematism?&nbsp;<em>Biotropica<\/em>. 48: 645\u2013655. DOI 10.1111\/btp.12336.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_vencl_et_al_-_biotropica_-_fireflies_bats_ants_toads.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_9faebb-41, .wp-block-kadence-advancedheading.kt-adv-heading265_9faebb-41[data-kb-block=\"kb-adv-heading265_9faebb-41\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_9faebb-41 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_9faebb-41[data-kb-block=\"kb-adv-heading265_9faebb-41\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_9faebb-41 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_9faebb-41\">2015<\/h2>\n\n\n\n<p>Bader, E, Jung, K, Kalko, EKV., Page, RA, Rodriguez, R, Sattler, T. 2015. Mobility explains the response of aerial insectivorous bats to anthropogenic habitat change in the Neotropics.&nbsp;<em>Biological Conservation<\/em>. 186: 97\u2013106.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2015_bader_et_al_-_biol_conserv_-_bat_mobility_anthropogenic_change.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Bulbert, MW, Page, RA, Bernal, XE. 2015. Danger comes from all fronts: predator-dependent escape tactics of t\u00fangara frogs.&nbsp;<em>PLoS ONE<\/em>: 10(4): e0120546. doi:10.1371\/journal.pone.0120546.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2015_bulbert_et_al_-_plos_one_danger_from_all_fronts.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Falk JJ*, ter Hofstede HM*, Jones PL, Dixon MM, Faure PA, Kalko EKV, Page RA. 2015. Sensory-based niche partitioning in a multiple predator-multiple prey community.&nbsp;<em>Proceedings of the Royal Society Series B<\/em>. 282: 20150520. http:\/\/dx.doi.org\/10.1098\/rspb.2015.0520.&nbsp;*Falk and ter Hofstede contributed equally to this work.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2015_falk_et_al_-_proc_roy_soc_-_bats_katydids_sensory_niche_partitioning.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Fug\u00e8re V, O&#8217;Mara MT, Page RA. 2015. Perceptual bias does not explain preference for prey call adornment in the frog-eating bat.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. DOI 10.1007\/s00265-015-1949-2. <a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2015-Fuge\u0300re-et-al-Beh-Ecol-Soc-perceptual-bias.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Rhebergen F, Taylor RC, Ryan MJ, Page RA, Halfwerk W. 2015. Multimodal cues improve prey localisation under complex environmental conditions.&nbsp;<em>Proceedings of the Royal Society Series B<\/em>. 282: 20151403. http:\/\/dx.doi.org\/10.1098\/rspb.2015.1403.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2015_rhebergen_et_al_-_proc_roy_soc_-_heterospecific_chorus_multimodal_cues.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Stockmaier S, Dechmann DKN, Page RA, O\u2019Mara MT. 2015. No fever and leukocytosis in response to a lipopolysaccaride challenge in an insectivorous bat.&nbsp;<em>Biology Letters<\/em>. 11: 20150576. http:\/\/dx.doi.org\/10.1098\/rsbl.2015.0576.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2015_stockmaier_et_al_-_biology_letters_-_molossid_lack_of_fever.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_ebf432-43, .wp-block-kadence-advancedheading.kt-adv-heading265_ebf432-43[data-kb-block=\"kb-adv-heading265_ebf432-43\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_ebf432-43 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_ebf432-43[data-kb-block=\"kb-adv-heading265_ebf432-43\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_ebf432-43 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_ebf432-43\">2014<\/h2>\n\n\n\n<p>Clarin TMA, Borissov I, Page RA, Ratcliffe JM, Siemers BM. 2014. Social learning within and across species: information transfer in mouse-eared bats.&nbsp;<em>Canadian Journal of Zoology<\/em>. 129-139. DOI 10.1139\/cjz-2013-0211.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_clarin_et_al_-_can_j_zool_-_mouse_eared_social_learning.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Halfwerk W, Dixon MM, Ottens K, Taylor RC, Ryan MJ, Page RA, Jones PL. 2014. Risks of multimodal signaling: bat predators attend to dynamic motion in frog sexual displays.&nbsp;<em>Journal of Experimental Biology<\/em>. 217: 3038-3044. DOI 10.1242\/jeb.107482.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_halfwerk_et_al_-_jeb_bat_preference_for_robofrog.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Halfwerk W, Jones PL, Taylor RC, Ryan MJ, Page RA. 2014. Risky ripples allow bats and frogs to eavesdrop on a multisensory sexual display.&nbsp;<em>Science<\/em>. 342: 413-416, DOI 10.1126\/science.1244812.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_halfwerk_et_al_-_science_risky_ripples.pdf\">PDF<\/a>, Supplemental Materials&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_halfwerk_et_al_-_science_risky_ripples_supplement.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Halfwerk W, Page RA, Taylor RC, Wilson PS, Ryan MJ. 2014. Cross-modal comparisons of signal components allow for relative distance assessment.&nbsp;<em>Current Biology<\/em>: http:\/\/dx.doi.org\/10.1016\/j.cub.2014.05.068.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_halfwerk_et_al_-_current_biol_frog_ripple_ranging.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Jones PL, Ryan MJ, Page RA. 2014. Population and seasonal variation in response to prey calls by an eavesdropping bat.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>. 68: 605-615. DOI 10.1007\/s00265-013-1675-6.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_jones_et_al_-_beh_ecol_soc_seasonal_and_pop_variation.pdf\">PDF<\/a><\/p>\n\n\n\n<p>O\u2019Mara MT, Dechmann DKN, Page RA. 2014. Frugivorous bats evaluate the quality of social information when choosing novel foods.&nbsp;<em>Behavioral Ecology<\/em>: 1\u20137. doi:10.1093\/beheco\/aru120.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_omara_et_al_-_beh_ecol_frugivorous_bats_social_info_quality.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA, Ryan MJ, Bernal XE. 2014. Be loved, be prey, be eaten. In:&nbsp;Animal Behavior, vol 3. Case Studies: Integration and Application of Animal Behavior&nbsp;(ed., K. Yasukawa), New York: Praeger. pp. 123-154.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2014_page_et_al_-_be_eaten_-_eavesdropper_review.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_3542c8-76, .wp-block-kadence-advancedheading.kt-adv-heading265_3542c8-76[data-kb-block=\"kb-adv-heading265_3542c8-76\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_3542c8-76 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_3542c8-76[data-kb-block=\"kb-adv-heading265_3542c8-76\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_3542c8-76 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_3542c8-76\">2013<\/h2>\n\n\n\n<p>Clarin TMA, Ruczy\u0144ski I, Page RA, Siemers BM. 2013. Foraging ecology predicts learning performance in insectivorous bats.&nbsp;<em>PLoS ONE<\/em>. 8: e64823.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2013_clarin_et_al_plos_one_-_comparative_learning.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Jones PL, Farris HE, Ryan MJ, Page RA. 2013. Do frog-eating bats perceptually bind the complex components of frog calls?&nbsp;<em>Journal of Comparative Physiology A<\/em>. 199: 279-283.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2013_jones_et_al_-_j_comp_phys_perceptual_binding.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Jones PL, Ryan MJ, Flores V, Page RA. 2013. When to approach novel prey cues? Social learning strategies in frog-eating bats.&nbsp;<em>Proceedings of the Royal Society Series B<\/em>. 280: 20132330, http:\/\/dx.doi.org\/10.1098\/rspb.2013.2330.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2013_jones_et_al_proc_roy_soc_-_social_learning_strategies.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Surlykke A, Jakobsen L, Kalko EKV., Page RA. 2013. Echolocation intensity and directionality of perching and flying fringe-lipped bats,&nbsp;<em>Trachops cirrhosus<\/em>&nbsp;(Phyllostomidae).&nbsp;<em>Frontiers in Physiology<\/em>. 4:143, doi: 10.3389\/fphys. 2013.00143.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2013_surlykke_et_al_frontiers_-_echolocation_directionality.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_4e03da-71, .wp-block-kadence-advancedheading.kt-adv-heading265_4e03da-71[data-kb-block=\"kb-adv-heading265_4e03da-71\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_4e03da-71 mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_4e03da-71[data-kb-block=\"kb-adv-heading265_4e03da-71\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_4e03da-71 wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_4e03da-71\">2012<\/h2>\n\n\n\n<p>Page RA, Schnelle T, Kalko EKV, Bunge T, Bernal XE. 2012. Sequential assessment of prey through the use of multiple sensory cues by an eavesdropping bat.&nbsp;<em>Naturwissenschaften<\/em>&nbsp;99: 505-509.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2012_page_et_al_-_naturwissenschaften_-_sequential_cues.pdf\">PDF<\/a>,<\/p>\n\n\n\n<p>Page RA*, von Merten S*, Siemers BM. 2012. Associative memory or algorithmic search: a comparative study on learning strategies of bats and shrews.&nbsp;<em>Animal Cognition<\/em>&nbsp;15: 495-504.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2012_page_et_al_-_anim_cog_-_associative_memory_or_algorithmic_search.pdf\">PDF<\/a>,&nbsp;Coverage by&nbsp;<a href=\"https:\/\/www.orn.mpg.de\/22549\/Learning_and_Cognition\" target=\"_blank\" rel=\"noreferrer noopener\">Max Planck Institute for Ornithology<\/a>. *Page and von Merten contributed equally to this work.<\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_592f69-df, .wp-block-kadence-advancedheading.kt-adv-heading265_592f69-df[data-kb-block=\"kb-adv-heading265_592f69-df\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_592f69-df mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_592f69-df[data-kb-block=\"kb-adv-heading265_592f69-df\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_592f69-df wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_592f69-df\">2011<\/h2>\n\n\n\n<p>Akre KL, Farris HE, Lea AM, Page RA, Ryan MJ. 2011. Signal perception in frogs and bats and the evolution of mating signals.&nbsp;<em>Science<\/em>&nbsp;333: 751-752.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2011_akre_et_al_-_science_trait_elaboration.pdf\">PDF<\/a>, Supplemental Materials&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2011_akre_et_al_-_science_trait_elaboration_som.pdf\">PDF<\/a>, Perspective&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2011_akre_et_al_-_science_trait_elaboration_-_perspective.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Jones PL, Page RA, Hartbauer M, Siemers BM. 2011. Behavioral evidence for eavesdropping on prey song in two Palearctic sibling bat species.&nbsp;<em>Behavioral Ecology and Sociobiology<\/em>&nbsp;65: 333-340.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2011_jones_et_al_-_beh_ecol_soc_-_palearctic_eavesdropping.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_a49318-9a, .wp-block-kadence-advancedheading.kt-adv-heading265_a49318-9a[data-kb-block=\"kb-adv-heading265_a49318-9a\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_a49318-9a mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_a49318-9a[data-kb-block=\"kb-adv-heading265_a49318-9a\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_a49318-9a wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_a49318-9a\">2009<\/h2>\n\n\n\n<p>Bernal XE, Page RA, Ryan MJ, Argo TF, Wilson PS. 2009. Acoustic radiation patterns of mating calls of the t\u00fangara frog (<em>Physalaemus pustulosus<\/em>): implications for multiple receivers.&nbsp;<em>Journal of the Acoustical Society of America<\/em>&nbsp;126: 2757-2767.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2009_bernal_et_al_-_acoustic_radiation_patterns.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Siemers BM, Page RA. 2009<em>.&nbsp;<\/em>Behavioral studies of bats in captivity: methodology, training, and experimental design. In:&nbsp;<em>Ecological and Behavioral Methods for the Study of Bats&nbsp;<\/em>(ed. T. H. Kunz &amp; S. Parsons), Baltimore: Johns Hopkins University Press. pp. 373-392.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2009_siemers___page_ch17_373-392.pdf\">PDF<\/a><\/p>\n\n\n<style>.wp-block-kadence-advancedheading.kt-adv-heading265_aecab2-2a, .wp-block-kadence-advancedheading.kt-adv-heading265_aecab2-2a[data-kb-block=\"kb-adv-heading265_aecab2-2a\"]{font-style:normal;}.wp-block-kadence-advancedheading.kt-adv-heading265_aecab2-2a mark.kt-highlight, .wp-block-kadence-advancedheading.kt-adv-heading265_aecab2-2a[data-kb-block=\"kb-adv-heading265_aecab2-2a\"] mark.kt-highlight{font-style:normal;color:#f76a0c;-webkit-box-decoration-break:clone;box-decoration-break:clone;padding-top:0px;padding-right:0px;padding-bottom:0px;padding-left:0px;}<\/style>\n<h2 class=\"kt-adv-heading265_aecab2-2a wp-block-kadence-advancedheading has-kb-palette-1-color has-text-color\" data-kb-block=\"kb-adv-heading265_aecab2-2a\">2008 and earlier<\/h2>\n\n\n\n<p>Page RA, Ryan MJ. 2008<em>.&nbsp;<\/em>The effect of signal complexity on localization performance in bats that localize frog calls.&nbsp;<em>Animal Behaviour&nbsp;<\/em>76: 761-769.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2008_page___ryan_-_anim_beh_localization.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Bernal XE, Page RA, Rand AS, Ryan MJ. 2007. Cues for eavesdroppers: do frog calls indicate prey density and quality?&nbsp;<em>American Naturalist&nbsp;<\/em>169: 409-415.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2007_bernal_et_al_-_cues_for_eavesdroppers.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA. 2007. Prey-predator communication: for your sensors only. Dispatch for&nbsp;<em>Current Biology&nbsp;<\/em>17: R965-R966.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2007_page_-_ground_squirrel_dispatch.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA, Ryan MJ. 2006. Social transmission of novel foraging behavior in bats: frog calls and their referents.&nbsp;<em>Current Biology&nbsp;<\/em>16: 1201-1205.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2006_page___ryan_-_curr_biol_social_learning.pdf\">PDF<\/a>,&nbsp; Dispatch&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2006_page___ryan_-_social_learning_dispatch.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA, Bernal XE. 2006. T\u00fangara frogs. Quick guide for&nbsp;<em>Current Biology<\/em>&nbsp;16: R979-980.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2006_page___bernal_-_tungara_guide.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Page RA, Ryan MJ. 2005. Flexibility in assessment of prey cues: frog-eating bats and frog calls.&nbsp;<em>Proceedings of the Royal Society Series B&nbsp;<\/em>272: 841-847<em>.&nbsp;<\/em><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2005_page___ryan_-_flexibility_reversal_experiment.pdf\">PDF<\/a><\/p>\n\n\n\n<p>Gabor CR, Page RA. 2003. Female preference for large males in sailfin mollies,&nbsp;<em>Poecilia latipinna<\/em>: the importance of predation pressure and reproductive status.&nbsp;<em>Acta Ethologica&nbsp;<\/em>6: 7-12.&nbsp;<a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2003_gabor___page_-_sailfin_mollies.pdf\">PDF<\/a><\/p>\n<\/div><\/div>\n\n\n<style>.kadence-column265_f05c9a-c2 > .kt-inside-inner-col,.kadence-column265_f05c9a-c2 > .kt-inside-inner-col:before{border-top-left-radius:0px;border-top-right-radius:0px;border-bottom-right-radius:0px;border-bottom-left-radius:0px;}.kadence-column265_f05c9a-c2 > .kt-inside-inner-col{column-gap:var(--global-kb-gap-sm, 1rem);}.kadence-column265_f05c9a-c2 > .kt-inside-inner-col{flex-direction:column;}.kadence-column265_f05c9a-c2 > .kt-inside-inner-col > .aligncenter{width:100%;}.kadence-column265_f05c9a-c2 > .kt-inside-inner-col:before{opacity:0.3;}.kadence-column265_f05c9a-c2{position:relative;}@media all and (max-width: 1024px){.kadence-column265_f05c9a-c2 > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}@media all and (max-width: 767px){.kadence-column265_f05c9a-c2 > .kt-inside-inner-col{flex-direction:column;justify-content:center;}}<\/style>\n<div class=\"wp-block-kadence-column kadence-column265_f05c9a-c2 inner-column-2\"><div class=\"kt-inside-inner-col\">\n<figure class=\"wp-block-image alignleft size-large\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2022_munoz-romo_et_al_mamm_biol_-_sexual_dimorphism_ametrida_centurio.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"550\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/ametrida-centurio_orig-1024x550.jpeg\" alt=\"\" class=\"wp-image-580\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/ametrida-centurio_orig-1024x550.jpeg 1024w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/ametrida-centurio_orig-300x161.jpeg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/ametrida-centurio_orig-768x412.jpeg 768w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/ametrida-centurio_orig.jpeg 1030w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/><\/a><figcaption class=\"wp-element-caption\">Mu\u00f1oz-Romo et al. 2022. Revealing hidden sexually dimorphic male traits in the little white-shouldered bat.<br><\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image alignleft size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"240\" height=\"263\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2021-mariana-s-graphical-abstract_orig.jpeg\" alt=\"\" class=\"wp-image-592\" \/><figcaption class=\"wp-element-caption\">Mu\u00f1oz-Romo et al 2021. Redefining the study of sexual dimorphism in bats: following the odour trail. (Photos by M Tschapka, M Tuttle, PB Jones, M Mu\u00f1oz-Romo, N Nesi, B Patterson, K Amponsah-Mensah, J. Mart\u00ednez-Fonseca, TH Kunz)<br><\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/www.annualreviews.org\/doi\/full\/10.1146\/annurev-ecolsys-012921-052635\"><img loading=\"lazy\" decoding=\"async\" width=\"940\" height=\"837\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/sensory-and-cognitive-ecology_orig.jpeg\" alt=\"\" class=\"wp-image-1393\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/sensory-and-cognitive-ecology_orig.jpeg 940w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/sensory-and-cognitive-ecology_orig-300x267.jpeg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/sensory-and-cognitive-ecology_orig-768x684.jpeg 768w\" sizes=\"auto, (max-width: 940px) 100vw, 940px\" \/><\/a><figcaption class=\"wp-element-caption\">Page &amp; ter Hofstede 2021. Sensory and cognitive ecology of bats.<br><\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-large\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_carter_et_al_curr_biol_-_development_of_new_food_sharing_relationships.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"446\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/carter-et-al-2020_orig-1024x446.png\" alt=\"\" class=\"wp-image-1513\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/carter-et-al-2020_orig-1024x446.png 1024w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/carter-et-al-2020_orig-300x131.png 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/carter-et-al-2020_orig-768x334.png 768w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/carter-et-al-2020_orig.png 1165w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/><\/a><figcaption class=\"wp-element-caption\">Carter et al 2020. Development of new food-sharing relationships in vampire bats.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_flores_et_al_roy_soc_open_sci_-_trachops_social_structure_and_relatedness.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"831\" height=\"670\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/merlin-tuttle-trachops-group_orig.png\" alt=\"\" class=\"wp-image-1516\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/merlin-tuttle-trachops-group_orig.png 831w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/merlin-tuttle-trachops-group_orig-300x242.png 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/merlin-tuttle-trachops-group_orig-768x619.png 768w\" sizes=\"auto, (max-width: 831px) 100vw, 831px\" \/><\/a><figcaption class=\"wp-element-caption\">Flores et al 2020. Social structure and relatedness in the fringe-lipped bat (Trachops cirrhosus).<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/publications\/katydid-walking-vs-tremulating-vs-still_orig\/\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"616\" height=\"312\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/katydid-walking-vs-tremulating-vs-still_orig.png\" alt=\"\" class=\"wp-image-1519\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/katydid-walking-vs-tremulating-vs-still_orig.png 616w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/katydid-walking-vs-tremulating-vs-still_orig-300x152.png 300w\" sizes=\"auto, (max-width: 616px) 100vw, 616px\" \/><\/a><figcaption class=\"wp-element-caption\">Geipel et al 2020. Predation risks of signalling and searching: bats prefer moving katydids.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><img loading=\"lazy\" decoding=\"async\" width=\"680\" height=\"893\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/phyllostomid-bats-cover_orig.png\" alt=\"\" class=\"wp-image-1525\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/phyllostomid-bats-cover_orig.png 680w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/phyllostomid-bats-cover_orig-228x300.png 228w\" sizes=\"auto, (max-width: 680px) 100vw, 680px\" \/><figcaption class=\"wp-element-caption\">Hemingway et al 2020. The omnivore\u2019s dilemma: the paradox of the generalist predators. Book chapter in Phyllostomid Bats: A Unique Mammalian Radiation<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-large\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"515\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/tracking-work-2020_orig-1024x515.png\" alt=\"\" class=\"wp-image-1528\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/tracking-work-2020_orig-1024x515.png 1024w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/tracking-work-2020_orig-300x151.png 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/tracking-work-2020_orig-768x386.png 768w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/tracking-work-2020_orig.png 1100w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/><figcaption class=\"wp-element-caption\">Ripperger et al 2020. Thinking small: Next-generation sensor networks close the size gap in vertebrate biologging.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_szczygiel___page_ecology_-_bothrops_eating_bat.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"519\" height=\"447\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/bothrops-eating-trachops-photo-by-hubert-szczygie_orig.png\" alt=\"\" class=\"wp-image-1531\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/bothrops-eating-trachops-photo-by-hubert-szczygie_orig.png 519w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/bothrops-eating-trachops-photo-by-hubert-szczygie_orig-300x258.png 300w\" sizes=\"auto, (max-width: 519px) 100vw, 519px\" \/><\/a><figcaption class=\"wp-element-caption\">Szczygie\u0142 &amp; Page 2020. When the hunter becomes the hunted: foraging bat attacked by pit-viper at frog chorus. (Photo by Hubert Szczygie\u0142)<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2020_velilla_et_al_bes_gone_with_the_wind.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"678\" height=\"836\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gone-with-the-wind_orig.png\" alt=\"\" class=\"wp-image-1582\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gone-with-the-wind_orig.png 678w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gone-with-the-wind_orig-243x300.png 243w\" sizes=\"auto, (max-width: 678px) 100vw, 678px\" \/><\/a><figcaption class=\"wp-element-caption\">Velilla et al 2020. Gone with the wind: Is signal timing in a neotropical katydid an adaptive response to variation in wind-induced vibratory noise? (Image by Migl\u0117 Nevierait\u0117)<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_dixon_et_al_beas_-_attention.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"382\" height=\"578\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/dixon-et-al-2019-beas_orig.jpg\" alt=\"\" class=\"wp-image-1585\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/dixon-et-al-2019-beas_orig.jpg 382w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/dixon-et-al-2019-beas_orig-198x300.jpg 198w\" sizes=\"auto, (max-width: 382px) 100vw, 382px\" \/><\/a><figcaption class=\"wp-element-caption\">Dixon et al 2019. Habituation and ecological salience: insights into the foraging ecology of the fringed-lipped bat, Trachops cirrhosus.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-large\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"717\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/vincent-s-poison-frog-map_orig-1024x717.jpg\" alt=\"\" class=\"wp-image-1597\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/vincent-s-poison-frog-map_orig-1024x717.jpg 1024w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/vincent-s-poison-frog-map_orig-300x210.jpg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/vincent-s-poison-frog-map_orig-768x538.jpg 768w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/vincent-s-poison-frog-map_orig.jpg 1100w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/><figcaption class=\"wp-element-caption\">Flores et al 2019. Vicente \u0301s poison frog (Oophaga vicentei) in the wild: calling activity, bioacoustics and diet.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_geipel_et_al_beh_ecol_-_traffic_noise_roost_emergence.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"561\" height=\"828\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/geipel-et-al-2019-traffic-noise_orig.jpg\" alt=\"\" class=\"wp-image-1600\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/geipel-et-al-2019-traffic-noise_orig.jpg 561w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/geipel-et-al-2019-traffic-noise_orig-203x300.jpg 203w\" sizes=\"auto, (max-width: 561px) 100vw, 561px\" \/><\/a><figcaption class=\"wp-element-caption\">Geipel et al 2019. Does bat response to traffic noise support the misleading cue hypothesis?<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_gessinger_et_al_-_rsos_lonchorhina_aurita_unusual_echolocation.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"658\" height=\"905\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/illustration-by-gloria-gessinger.jpg\" alt=\"\" class=\"wp-image-1615\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/illustration-by-gloria-gessinger.jpg 658w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/illustration-by-gloria-gessinger-218x300.jpg 218w\" sizes=\"auto, (max-width: 658px) 100vw, 658px\" \/><\/a><figcaption class=\"wp-element-caption\">Gessinger et al 2019. Unusual echolocation behaviour of the common sword-nosed bat Lonchorhina aurita: an adaptation to aerial insectivory in a phyllostomid bat?<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_halczok_et_al_ecol_evol_-_trachops_male-biased_dispersal.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"408\" height=\"244\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halczok-et-al-2018_orig.jpg\" alt=\"\" class=\"wp-image-1624\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halczok-et-al-2018_orig.jpg 408w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halczok-et-al-2018_orig-300x179.jpg 300w\" sizes=\"auto, (max-width: 408px) 100vw, 408px\" \/><\/a><figcaption class=\"wp-element-caption\">Halczok et al 2019. Male-biased dispersal and the potential impact of human-induced habitat modifications on the Neotropical bat Trachops cirrhosus.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_legett_et_al_proc_roy_soc_sychronized_mating_calls_smilisca.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"1017\" height=\"763\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-legett-et-al_orig.jpg\" alt=\"\" class=\"wp-image-1627\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-legett-et-al_orig.jpg 1017w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-legett-et-al_orig-300x225.jpg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-legett-et-al_orig-768x576.jpg 768w\" sizes=\"auto, (max-width: 1017px) 100vw, 1017px\" \/><\/a><figcaption class=\"wp-element-caption\">Legett et al 2019. Synchronized mating signals in a communication network: the challenge of avoiding predators while attracting mates.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019_page___bernal_functional_ecology_bat_information_use_review.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"923\" height=\"631\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-page-bernal-funct-ecol.jpg\" alt=\"\" class=\"wp-image-1630\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-page-bernal-funct-ecol.jpg 923w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-page-bernal-funct-ecol-300x205.jpg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2019-page-bernal-funct-ecol-768x525.jpg 768w\" sizes=\"auto, (max-width: 923px) 100vw, 923px\" \/><\/a><figcaption class=\"wp-element-caption\">Page &amp; Bernal 2019. The challenge of detecting prey: Private and social information use in predatory bats.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_halfwerk_et_al_nature_ecol_evol_-_frog_citisex.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"840\" height=\"205\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halfwerk-et-al-2018-citisex_orig.jpg\" alt=\"\" class=\"wp-image-1633\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halfwerk-et-al-2018-citisex_orig.jpg 840w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halfwerk-et-al-2018-citisex_orig-300x73.jpg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/halfwerk-et-al-2018-citisex_orig-768x187.jpg 768w\" sizes=\"auto, (max-width: 840px) 100vw, 840px\" \/><\/a><figcaption class=\"wp-element-caption\">Halfwerk et al 2018. Adaptive changes in sexual signalling in response to urbanization.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_hiller_et_al_parasitology_-_bat_fly_ecomorphology.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"471\" height=\"279\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/streblid-bat-fly-leg_orig.jpg\" alt=\"\" class=\"wp-image-1639\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/streblid-bat-fly-leg_orig.jpg 471w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/streblid-bat-fly-leg_orig-300x178.jpg 300w\" sizes=\"auto, (max-width: 471px) 100vw, 471px\" \/><\/a><figcaption class=\"wp-element-caption\">Hiller et al 2018. Leg structure explains host site preference in bat flies (Diptera: Streblidae) parasitizing neotropical bats (Chiroptera: Phyllostomidae).<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_kohles_et_al_plos_one_uroderma_mother-pup.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"688\" height=\"906\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/uroderma-arm-pulsing-behavior_orig.jpg\" alt=\"\" class=\"wp-image-1648\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/uroderma-arm-pulsing-behavior_orig.jpg 688w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/uroderma-arm-pulsing-behavior_orig-228x300.jpg 228w\" sizes=\"auto, (max-width: 688px) 100vw, 688px\" \/><\/a><figcaption class=\"wp-element-caption\">Kohles et al 2018. Rapid behavioral changes during early development in Peters\u2019 tent-making bat (Uroderma bilobatum).<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_ryan_et_al_anim_behav_-_crazy_love.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"578\" height=\"428\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/crazy-love-photo-by-merlin-tuttle_orig.png\" alt=\"\" class=\"wp-image-1651\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/crazy-love-photo-by-merlin-tuttle_orig.png 578w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/crazy-love-photo-by-merlin-tuttle_orig-300x222.png 300w\" sizes=\"auto, (max-width: 578px) 100vw, 578px\" \/><\/a><figcaption class=\"wp-element-caption\">Ryan et al 2018. \u2018Crazy love\u2019: nonlinearity and irrationality in mate choice.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_flores___page_-_nature_research_highlights.jpg\" target=\"_blank\" rel=\"noreferrer noopener lightbox-1\"><img loading=\"lazy\" decoding=\"async\" width=\"750\" height=\"850\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/flores-page-2017-crust-illustration-by-damond-kyllo_orig.jpg\" alt=\"\" class=\"wp-image-1654\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/flores-page-2017-crust-illustration-by-damond-kyllo_orig.jpg 750w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/flores-page-2017-crust-illustration-by-damond-kyllo_orig-265x300.jpg 265w\" sizes=\"auto, (max-width: 750px) 100vw, 750px\" \/><\/a><figcaption class=\"wp-element-caption\">Flores &amp; Page 2017. Novel odorous crust on the forearm of reproductive male fringe-lipped bats (Trachops cirrhosus).<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2018_miller_et_al_anim_cogn_-_cane_toad_exploration_native_range.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"401\" height=\"285\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/miller-et-al-2018_orig.jpg\" alt=\"\" class=\"wp-image-1660\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/miller-et-al-2018_orig.jpg 401w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/miller-et-al-2018_orig-300x213.jpg 300w\" sizes=\"auto, (max-width: 401px) 100vw, 401px\" \/><\/a><figcaption class=\"wp-element-caption\">Miller et al 2018. Exploratory behavior of a native anuran species with high invasive potential.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_taylor_et_al_-_int_comp_biol_-_perceived_synchrony.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"548\" height=\"726\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017-taylor-et-al_orig.jpg\" alt=\"\" class=\"wp-image-1663\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017-taylor-et-al_orig.jpg 548w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017-taylor-et-al_orig-226x300.jpg 226w\" sizes=\"auto, (max-width: 548px) 100vw, 548px\" \/><\/a><figcaption class=\"wp-element-caption\">Taylor et al 2017. Perceived synchrony of frog multimodal signal components is influenced by content and order.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2017_ter_hofstede_et_al_neo_biodiv_-_m._hirsuta_culled_remains.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"436\" height=\"660\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/culled-katydid-remains_orig.jpg\" alt=\"\" class=\"wp-image-1669\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/culled-katydid-remains_orig.jpg 436w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/culled-katydid-remains_orig-198x300.jpg 198w\" sizes=\"auto, (max-width: 436px) 100vw, 436px\" \/><\/a><figcaption class=\"wp-element-caption\">ter Hofstede et al 2017. Revisiting adaptations of Neotropical katydids (Orthoptera: Tettigoniidae) to gleaning bat predation.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-large\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_gomes_et_al_-_science_bats_noise.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"640\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/robofrog-noise-experiment_orig-1024x640.jpg\" alt=\"\" class=\"wp-image-1678\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/robofrog-noise-experiment_orig-1024x640.jpg 1024w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/robofrog-noise-experiment_orig-300x188.jpg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/robofrog-noise-experiment_orig-768x480.jpg 768w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/robofrog-noise-experiment_orig.jpg 1083w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/><\/a><figcaption class=\"wp-element-caption\">Gomes et al 2016. Bats perceptually weight prey cues across sensory systems when hunting in noise.<\/figcaption><\/figure>\n\n\n\n<figure class=\"wp-block-image size-full\"><a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/2016_jones_et_al_-_to_listen_or_to_scream.pdf\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" decoding=\"async\" width=\"909\" height=\"910\" src=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gleaner-vs-hawker_orig.jpg\" alt=\"\" class=\"wp-image-1684\" srcset=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gleaner-vs-hawker_orig.jpg 909w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gleaner-vs-hawker_orig-300x300.jpg 300w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gleaner-vs-hawker_orig-150x150.jpg 150w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gleaner-vs-hawker_orig-768x769.jpg 768w, https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/wp-content\/uploads\/sites\/115\/2022\/06\/gleaner-vs-hawker_orig-800x800.jpg 800w\" sizes=\"auto, (max-width: 909px) 100vw, 909px\" \/><\/a><figcaption class=\"wp-element-caption\">Jones et al 2016. To scream or to listen? Prey detection and discrimination in animal-eating bats.<\/figcaption><\/figure>\n<\/div><\/div>\n\n<\/div><\/section>","protected":false},"excerpt":{"rendered":"<p>2025Christiano BM, Weikel MM, James LS, Ryan MJ, Page RA. 2025. Ripeness preferences in Seba&#8217;s short tailed-fruit bats, Carollia perspicillata. Acta Chiropterologica. 27: 75-83. https:\/\/doi.org\/10.3161\/15081109ACC2025.27.1.007. G\u00f3mez-Feuillet LF, O\u2019Mara MT, Page RA. 2025. Leptodactylus savagei (Savage\u2019s thin-toed frog). Diet. Herpetological Review. James LS, O\u2019Mara MT, Touchon JC, Ryan MJ, Bernal XE, Page RA. 2025. The ontogeny &hellip; <a href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/publications\/\">Continued<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"inline_featured_image":false,"_kad_blocks_custom_css":"","_kad_blocks_head_custom_js":"","_kad_blocks_body_custom_js":"","_kad_blocks_footer_custom_js":"","_exactmetrics_skip_tracking":false,"_exactmetrics_sitenote_active":false,"_exactmetrics_sitenote_note":"","_exactmetrics_sitenote_category":0,"footnotes":""},"class_list":["post-265","page","type-page","status-publish","hentry"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v25.7 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Publications - Sensory and Cognitive Ecology Lab<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/striresearch.si.edu\/sensory-and-cognitive-ecology-lab\/publications\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Publications - Sensory and Cognitive Ecology Lab\" \/>\n<meta property=\"og:description\" content=\"2025Christiano BM, Weikel MM, James LS, Ryan MJ, Page RA. 2025. 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