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Oilbirds, Current Biology, 27(21), R1145–R1147.

Briscoe, A. D., et al. (2010) Positive selection of a duplicated UV-sensitive visual pigment coincides with wing pigment evolution in Heliconius butterflies, Proceedings of the National Academy of Sciences, 107(8), 3628–3633.

Broom, D. (2001) Evolution of pain, Vlaams Diergeneeskundig Tijdschrift, 70, 17–21.

Brothers, J. R., and Lohmann, K. J. (2018) Evidence that magnetic navigation and geomagnetic imprinting shape spatial genetic variation in sea turtles, Current Biology, 28(8), 1325–1329.e2.

Brown, F. A. (1962) Responses of the planarian, dugesia, and the protozoan, paramecium, to very weak horizontal magnetic fields, Biological Bulletin, 123(2), 264–281.

Brown, F. A., Webb, H. M., and Barnwell, F. H. (1964) A compass directional phenomenon in mud-snails and its relation to magnetism, Biological Bulletin, 127(2), 206–220.

Brown, R. E., and Fedde, M. R. (1993) Airflow sensors in the avian wing, Journal of Experimental Biology, 179(1), 13–30.

Brownell, P., and Farley, R. D. (1979a) Detection of vibrations in sand by tarsal sense organs of the nocturnal scorpion, Paruroctonus mesaensis, Journal of Comparative Physiology A, 131(1), 23–30.

Brownell, P., and Farley, R. D. (1979b) Orientation to vibrations in sand by the nocturnal scorpion, Paruroctonus mesaensis: Mechanism of target localization, Journal of Comparative Physiology A, 131(1), 31–38.

Brownell, P., and Farley, R. D. (1979c) Prey-localizing behaviour of the nocturnal desert scorpion, Paruroctonus mesaensis: Orientation to substrate vibrations, Animal Behaviour, 27(Pt 1), 185–193.

Brownell, P. H. (1984) Prey detection by the sand scorpion, Scientific American, 251(6), 86–97.

Brumm, H. (2004) The impact of environmental noise on song amplitude in a territorial bird, Journal of Animal Ecology, 73(3), 434–440.

Brunetta, L., and Craig, C. L. (2012) Spider silk: Evolution and 400 million years of spinning, waiting, snagging, and mating. New Haven, CT: Yale University Press.

Bryant, A. S., et al. (2018) A critical role for thermosensation in host seeking by skin-penetrating nematodes, Current Biology, 28(14), 2338–2347.e6.

Bryant, A. S., and Hallem, E. A. (2018) Temperature-dependent behaviors of parasitic helminths, Neuroscience Letters, 687, 290–303.

Bullock, T. H. (1969) Species differences in effect of electroreceptor input on electric organ pacemakers and other aspects of behavior in electric fish, Brain, Behavior and Evolution, 2(2), 102–118.

Bullock, T. H., Behrend, K., and Heiligenberg, W. (1975) Comparison of the jamming avoidance responses in Gymnotoid and Gymnarchid electric fish: A case of convergent evolution of behavior and its sensory basis, Journal of Comparative Physiology, 103(1), 97–121.

Bullock, T. H., and Diecke, F. P. J. (1956) Properties of an infra-red receptor, Journal of Physiology, 134(1), 47–87.

Bush, N. E., Solla, S. A., and Hartmann, M. J. (2016) Whisking mechanics and active sensing, Current Opinion in Neurobiology, 40, 178–188.

Buxton, R. T., et al. (2017) Noise pollution is pervasive in U.S. protected areas, Science, 356(6337), 531–533.

Cadena, V., et al. (2013) Evaporative respiratory cooling augments pit organ thermal detection in rattlesnakes, Journal of Comparative Physiology A, 199(12), 1093–1104.

Caldwell, M. S., McDaniel, J. G., and Warkentin, K. M. (2010) Is it safe? Red-eyed treefrog embryos assessing predation risk use two features of rain vibrations to avoid false alarms, Animal Behaviour, 79(2), 255–260.

Calma, J. (2020) The pandemic turned the volume down on ocean noise pollution, The Verge. Available at: www.theverge.com/22166314/covid-19-pandemic-ocean-noise-pollution.

Caprio, J. (1975) High sensitivity of catfish taste receptors to amino acids, Comparative Biochemistry and Physiology Part A: Physiology, 52(1), 247–251.

Caprio, J., et al. (1993) The taste system of the channel catfish: From biophysics to behavior, Trends in Neurosciences, 16(5), 192–197.

Caputi, A. A. (2017) Active electroreception in weakly electric fish, in Sherman, S. M. (ed), Oxford research encyclopedia of neuroscience. New York: Oxford University Press. Available at: DOI: 10.1093/acrefore/9780190264086.013.106.

Caputi, A. A., et al. (2013) On the haptic nature of the active electric sense of fish, Brain Research, 1536, 27–43.

Caputi, Б. A., Aguilera, P. A., and Pereira, A. C. (2011) Active electric imaging: Body-object interplay and object's "electric texture," PLOS One, 6(8), e22793.

Caras, M. L. (2013) Estrogenic modulation of auditory processing: A vertebrate comparison, Frontiers in Neuroendocrinology, 34(4), 285–299.

Carlson, B. A. (2002) Electric signaling behavior and the mechanisms of electric organ discharge production in mormyrid fish, Journal of Physiology-Paris, 96(5), 405–419.

Carlson, B. A., et al. (eds), (2019) Electroreception: Fundamental insights from comparative approaches. Cham: Springer.

Carlson, B. A., and Arnegard, M. E. (2011) Neural innovations and the diversification of African weakly electric fishes, Communicative & Integrative Biology, 4(6), 720–725.

Carlson, B. A., and Sisneros, J. A. (2019) A brief history of electrogenesis and electroreception in fishes, in Carlson, B. A., et al. (eds), Electroreception: Fundamental insights from comparative approaches, 1–23. Cham: Springer.

Caro, T. M. (2016) Zebra stripes. Chicago: University of Chicago Press.

Caro, T., et al. (2019) Benefits of zebra stripes: Behaviour of tabanid flies around zebras and horses, PLOS One, 14(2), e0210831.

Carpenter, C. W., et al. (2018) Human ability to discriminate surface chemistry by touch, Materials Horizons, 5(1), 70–77.

Carr, A. (1995) Notes on the behavioral ecology of sea turtles, in Bjorndal, K. A. (ed), Biology and conservation of sea turtles, rev. ed., 19–26. Washington, DC: Smithsonian Institution Press.

Carr, A. L., and Salgado, V. L. (2019) Ticks home in on body heat: A new understanding of Haller's organ and repellent action, PLOS One, 14(8), e0221659.

Carr, C. E., and Christensen-Dalsgaard, J. (2015) Sound localization strategies in three predators, Brain, Behavior and Evolution, 86(1), 17–27.

Carr, C. E., and Christensen-Dalsgaard, J. (2016) Evolutionary trends in directional hearing, Current Opinion in Neurobiology, 40, 111–117.

Carr, T. D., et al. (2017) A new tyrannosaur with evidence for anagenesis and crocodile-like facial sensory system, Scientific Reports, 7(1), 44942.

Carrete, M., et al. (2012) Mortality at wind-farms is positively related to large-scale distribution and aggregation in griffon vultures, Biological Conservation, 145(1), 102–108.

Carvalho, L. S., et al. (2017) The genetic and evolutionary drives behind primate color vision, Frontiers in Ecology and Evolution, 5, 34.

Casas, J., and Dangles, O. (2010) Physical ecology of fluid flow sensing in arthropods, Annual Review of Entomology, 55(1), 505–520.

Casas, J., and Steinmann, T. (2014) Predator-induced flow disturbances alert prey, from the onset of an attack, Proceedings of the Royal Society B: Biological Sciences, 281(1790), 20141083.

Catania, K. C. (1995a) Magnified cortex in star-nosed moles, Nature, 375(6531), 453–454.

Catania, K. C. (1995b) Structure and innervation of the sensory organs on the snout of the star-nosed mole, Journal of Comparative Neurology, 351(4), 536–548.

Catania, K. C. (2006) Olfaction: Underwater "sniffing" by semi-aquatic mammals, Nature, 444(7122), 1024–1025.

Catania, K. C. (2008) Worm grunting, fiddling, and charming – Humans unknowingly mimic a predator to harvest bait, PLOS One, 3(10), e3472.

Catania, K. C. (2011) The sense of touch in the star-nosed mole: From mechanoreceptors to the brain, Philosophical Transactions of the Royal Society B: Biological Sciences, 366(1581), 3016–3025.

Catania, K. C. (2016) Leaping eels electrify threats, supporting Humboldt's account of a battle with horses, Proceedings of the National Academy of Sciences, 113(25), 6979–6984.

Catania, K. C. (2019) The astonishing behavior of electric eels, Frontiers in Integrative Neuroscience, 13, 23.

Catania, K. C., et al. (1993) Nose stars and brain stripes, Nature, 364(6437), 493.

Catania, K. C., and Kaas, J. H. (1997a) Somatosensory fovea in the star-nosed mole: Behavioral use of the star in relation to innervation patterns and cortical representation, Journal of Comparative Neurology, 387(2), 215–233.

Catania, K. C., and Kaas, J. H. (1997b) The mole nose instructs the brain, Somatosensory

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