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Titlebook: Sensory Processing in Aquatic Environments; Shaun P. Collin,N. Justin Marshall Book 2003 Springer Science+Business Media New York 2003 Ada

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Sound Detection Mechanisms and Capabilities of Teleost Fishesor issues of the field. Each topic is put in some historical perspective, but the chapter emphasizes current thinking about acoustic communication, hearing (including bandwidth, sensitivity, detection of signals in noise, discrimination, and sound source localization), the functions of the ear (both
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Physical Principles of Electric, Magnetic, and Near-Field Acoustic Orientationacoustic near field, this chapter discusses the physical features of the underwater world, the particular receptivities of the sense organs, and the spatial information the animals seek to orient at sea and to arrive at their prey. The objective is to establish the logical connections between the di
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Active Electrolocation and Its Neural Processing in Mormyrid Electric Fisheszed organ in their tail and sense this signal with epidermal electroreceptors. Objects in the vicinity of the fish locally alter the transepidermal current flow evoked by the EOD and thereby project an “electrical image” on the fish’s skin. By analyzing this image, the fish can detect and three-dime
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Retinal Sampling and the Visual Field in Fishesation of light energy (an optical image) into electrical energy (a neural image) across the retina is nonuniform and reflects the complexity and diversity of the visual field. The identification of localized differences in the function, arrangement, and distribution of retinal neurons in fishes has
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The Design of Color Signals and Color Vision in Fishessensitivities and potential color vision capabilities of marine fishes are discussed in the light of old and new data. Finally, an integrated approach is used to model what fishes look like to fishes and where, theoretically, one might expect them to place spectral sensitivities. Factors combined in
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