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Titlebook: Evolution of the Vertebrate Auditory System; Geoffrey A. Manley,Richard R. Fay,Arthur N. Popper Book 2004 Springer Science+Business Media

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Book 2004ds, and mammals. This book discusses the origin, specialization, and functional properties of sensory hair cells, beginning with environmental constraints on acoustic systems and addressing in detail the evolutionary history behind modern structure and function in the vertebrate ear. Taking a compar
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https://doi.org/10.1007/978-3-662-40238-2ly the presence of the three-ossicle middle ear. This key innovation appears to be one prerequisite for the capability of high-frequency hearing that is unique to mammals among tetrapods. The fossil record demonstrates that a middle ear with three ear ossicles precedes the evolution of an elongated
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https://doi.org/10.1007/978-3-662-34007-3ported by bone, see Vater et al., Chapter 9), it is discussed in this book. Of course, fossil organisms provide the foundation for our general-and in some cases rather detailed—understanding of the evolutionary relationships of the vertebrates (see Manley and Clack, Chapter 1), without which the sec
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Environmental Variables and the Fundamental Nature of Hearing,hen investigators finally are able to relate them directly to underlying changes in genotype—to the genetic networks that through development give rise to the observed morphological, physiological, and behavioral traits (e.g., see Coffin et al., Chapter 3, section 5; Grothe et al., Chapter 10, secti
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