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Rowe, A. H., et al. (2013) Voltage-gated sodium cha

Rubin, J. J., et al. (2018) The evolution of anti-bat sensory illusions in moths, Science Advances, 4(7), eaar7428.

Ruck, P. (1958) A comparison of the electrical responses of compound eyes and dorsal ocelli in four insect species, Journal of Insect Physiology, 2(4), 261–274.

Rundus, A. S., et al. (2007) Ground squirrels use an infrared signal to deter rattlesnake predation, Proceedings of the National Academy of Sciences, 104(36), 14372–14376.

Ryan, M. J. (1980) Female mate choice in a neotropical frog, Science, 209(4455), 523–525.

Ryan, M. J. (2018) A taste for the beautiful: The evolution of attraction. Princeton, NJ: Princeton University Press.

Ryan, M. J., et al. (1990) Sexual selection for sensory exploitation in the frog Physalaemus pustulosus, Nature, 343(6253), 66–67.

Ryan, M. J., and Rand, A. S. (1993) Sexual selection and signal evolution: The ghost of biases past, Philosophical Transactions of the Royal Society B: Biological Sciences, 340(1292), 187–195.

Rycyk, A. M., et al. (2018) Manatee behavioral response to boats, Marine Mammal Science, 34(4), 924–962.

Ryerson, W. (2014) Why snakes flick their tongues: A fluid dynamics approach. Unpublished dissertation, University of Co

Sacks, O., and Wasserman, R. (1987) The case of the colorblind painter, The New York Review of Books, November 19. Available at: www.nybooks.com/articles/1987/11/19/the-case-of-the-colorblind-painter/.

Saito, C. A., et al. (2004) Alouatta trichromatic color vision – single-unit recording from retinal ganglion cells and microspectrophotometry, Investigative Ophthalmology & Visual Science, 45, 4276.

Salazar, V. L., Krahe, R., and Lewis, J. E. (2013) The energetics of electric organ discharge generation in gymnotiform weakly electric fish, Journal of Experimental Biology, 216(13), 2459–2468.

Sales, G. D. (2010) Ultrasonic calls of wild and wild-type rodents, in Brudzynski, S. (ed), Handbook of behavioral neuroscience, vol. 19, 77–88. Amsterdam: Elsevier.

Sanders, D., et al. (2021) A meta-analysis of biological impacts of artificial light at night, Nature Ecology & Evolution, 5(1), 74–81.

Sarko, D. K., Rice, F. L., and Reep, R. L. (2015) Elaboration and i

Savoca, M. S., et al. (2016) Marine plastic debris emits a keystone infochemical for olfactory foraging seabirds, Science Advances, 2(11), e1600395.

Sawtell, N. B. (2017) Neural mechanisms for predicting the sensory consequences of behavior: Insights from electrosensory systems, A

Scanlan, M. M., et al. (2018) Magnetic map in nonanadromous Atlantic salmon, Proceedings of the National Academy of Sciences, 115(43), 10995–10999.

Schevill, W. E., and McBride, A. F. (1956) Evidence for echolocation by cetaceans, Deep Sea Research, 3(2), 153–154.

Schevill, W. E., Watkins, W. A., and Backus, R. H. (1964) The 20-cycle signals and Balaenoptera (fin whales), in Tavolga, W. N. (ed), Marine bio-acoustics, 147–152. Oxford: Pergamon Press.

Schiestl, F. P., et al. (2000) Sex pheromone mimicry in the early spider orchid (Ophrys sphegodes): Patterns of hydrocarbons as the key mechanism for pollination by sexual deception, Journal of Comparative Physiology A, 186(6), 567–574.

Schmitz, H., and Bleckma





Schmitz, H., and Bousack, H. (2012) Modelling a historic oil-tank fire allows an estimation of the sensitivity of the infrared receptors in pyrophilous Melanophila beetles, PLOS One, 7(5), e37627.

Schmitz, H., Schmitz, A., and Schneider, E. S. (2016) Matched filter properties of infrared receptors used for fire and heat detection in insects, in von der Emde, G., and Warrant, E. (eds), The ecology of animal senses, 207–234. Cham: Springer.

Schneider, E. R., et al. (2014) Neuronal mechanism for acute mechanosensitivity in tactile-foraging waterfowl, Proceedings of the National Academy of Sciences, 111(41), 14941–14946.

Schneider, E. R., et al. (2017) Molecular basis of tactile specialization in the duck bill, Proceedings of the National Academy of Sciences, 114(49), 13036–13041.

Schneider, E. R., et al. (2019) A cross-species analysis reveals a general role for Piezo2 in mechanosensory specialization of trigeminal ganglia from tactile specialist birds, Cell Reports, 26(8), 1979–1987.e3.

Schneider, E. S., Schmitz, A., and Schmitz, H. (2015) Concept of an active amplification mechanism in the infrared organ of pyrophilous Melanophila beetles, Frontiers in Physiology, 6, 391.

Schneider, W. T., et al. (2018) Vestigial singing behaviour persists after the evolutionary loss of song in crickets, Biology Letters, 14(2), 20170654.

Schneirla, T. C. (1944) A unique case of circular milling in ants, considered in relation to trail following and the general problem of orientation, American Museum Novitates, no. 1253.

Schnitzler, H.-U. (1967) Kompensation von Dopplereffekten bei Hufeisen-Fledermäusen, Naturwissenschaften, 54(19), 523.

Schnitzler, H.-U. (1973) Control of Doppler shift compensation in the greater horseshoe bat, Rhinolophus ferrumequinum, Journal of Comparative Physiology, 82(1), 79–92.

Schnitzler, H.-U., and Denzinger, A. (2011) Auditory fovea and Doppler shift compensation: Adaptations for flutter detection in echolocating bats using CF-FM signals, Journal of Comparative Physiology A, 197(5), 541–559.

Schnitzler, H.-U., and Kalko, E. K. V. (2001) Echolocation by insect-eating bats, BioScience, 51(7), 557–569.

Schraft, H. A., Bakken, G. S., and Clark, R. W. (2019) Infrared-sensing snakes select ambush orientation based on thermal backgrounds, Scientific Reports, 9(1), 3950.

Schraft, H. A., and Clark, R. W. (2019) Sensory basis of navigation in snakes: The relative importance of eyes and pit organs, Animal Behaviour, 147, 77–82.

Schraft, H. A., Goodman, C., and Clark, R. W. (2018) Do free-ranging rattlesnakes use thermal cues to evaluate prey? Journal of Comparative Physiology A, 204(3), 295–303.

Schrope, M. (2013) Giant squid filmed in its natural environment, Nature, doi.org/10.1038/nature.2013.12202.

Schuergers, N., et al. (2016) Cyanobacteria use micro-optics to sense light direction, eLife, 5, e12620.

Schuller, G., and Pollak, G. (1979) Disproportionate frequency representation in the inferior colliculus of Doppler-compensating greater horseshoe bats: Evidence for an acoustic fovea, Journal of Comparative Physiology, 132(1), 47–54.

Schulten, K., Swenberg, C. E., and Weller, A. (1978) A biomagnetic sensory mechanism based on magnetic field modulated coherent electron spin motion, Zeitschrift für Physikalische Chemie, 111(1), 1–5.

Schumacher, S., et al. (2016) Cross-modal object recognition and dynamic weighting of sensory inputs in a fish, Proceedings of the National Academy of Sciences, 113(27), 7638–7643.

Schusterman, R. J., et al. (2000) Why pi