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Titlebook: Auditory Pathway; Structure and Functi Josef Syka,R. Bruce Masterton Book 1988 Plenum Press, New York 1988 Mammalia.anatomy.development.phy

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期刊全称Auditory Pathway
期刊简称Structure and Functi
影响因子2023Josef Syka,R. Bruce Masterton
视频video
图书封面Titlebook: Auditory Pathway; Structure and Functi Josef Syka,R. Bruce Masterton Book 1988 Plenum Press, New York 1988 Mammalia.anatomy.development.phy
影响因子Since the last symposium on "Neuronal Mechanisms of Hearing" held in Prague in 1980 and published in the volume of the same name (J. Syka and L. Aitkin, Eds. , Plenum Press, 1981), remarkable progress has been achieved in the understanding of the auditory system. A variety of new ideas and new methods have emerged. This progress can be easily documented by comparing the volume based on the 1980 Symposium with the program for the 1987 Symposium. For example, there were 45 contributions to auditory physiology in each symposium but there were 27 contributions focusing on anatomy in 1987 as compared to 7 in 1980, and perhaps most telling, there were 12 contributions to the neurochemistry of the system in 1987 while there were only 3 in 1980. In terms of percentages of contributions, neuroanatomy rose from 13% to 32% and neurochemistry (or chemical anatomy) rose from 5% in 1980 to 14% in 1987. These increases in the numbers and proportions of anatomical and neurochemical contributions undoubtedly reflects the increasing availabil­ ity and rising expertise in the new neuroanatomica1 and biochemical techniques most notably, tract-tracing by exploitation of axonal transport or by intracell
Pindex Book 1988
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978-1-4684-1302-1Plenum Press, New York 1988
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Decision making and Nash equilibrium,ased interest in comparative studies. There are two main reasons for this upsurge in interest. Firstly, the hearing organs of amphibians, reptiles and birds display a structural variety not found in the cochlea of mammals, offering the chance to investigate structure- function relationships without
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Konnyaku Mondo and Game Theory,bats. Knowledge of the influence of torso, head and pinna on the acoustic event is essential in investigations of the response of auditory neurons using a sound source under free-field conditions. Measurements of the acoustic properties of the outer ear in humans have been made in the seventies by B
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Game Theory and Mutual MisunderstandingTwo major cytoskeletal proteins which occur ubiquitously in eukaryotic cells are actin and tubulin. Actin occurs with actin-binding and actin-bundling proteins, where it functions primarily to provide support or stiffening, and with myosin and tropomyosin, a combination often associated with motilit
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Souvik Roy,Soumyarup Sadhukhan,Arunava Sennimal mutants (Schrott and Spoendlin, 1987; Steel et al., 1987) indicate a crucial position of the melanocytes onto the sensory areas. The audiological findings of minor susceptibility to noise exposure by pigmented animals and humans suggest an influence of melanin on inner ear physiology and patho
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Dhritiman Gupta,Soumendu Sarkarbirth. However, other investigators have reported differences in the age of onset for cochlear microphonic (CM) potentials and compound action potentials (AP) in these two species. In the cat, CM appears two days before birth (Romand, 1971), whereas the rat’s onset of CM is reported to be 8–9 days a
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https://doi.org/10.1007/978-981-16-4737-6 maturation. During the past decade, a supra-normal period of sensitivity to acoustic trauma during development has been reported for several mammalian species, such as hamsters, guinea pigs, mice, rats (Falk et al., 1974; Bock and Saunders, 1977; Lenoir et al., 1979; Henry, 1984; and others) and wa
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