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Titlebook: Auditory System; Physiology (CNS) · B Moshe Abeles,GÖran Bredberg,E. Zwicker,Wolf D. Kei Book 1975 Springer-Verlag, Berlin · Heidelberg 197

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期刊全称Auditory System
期刊简称Physiology (CNS) · B
影响因子2023Moshe Abeles,GÖran Bredberg,E. Zwicker,Wolf D. Kei
视频video
学科分类Handbook of Sensory Physiology
图书封面Titlebook: Auditory System; Physiology (CNS) · B Moshe Abeles,GÖran Bredberg,E. Zwicker,Wolf D. Kei Book 1975 Springer-Verlag, Berlin · Heidelberg 197
影响因子nerve; subsequently, however, they concluded that the recordings had been from aberrant cells of the cochlear nucleus lying central to the glial margin of the VIII nerve (GALAMBOS and DAVIS, 1948). The first successful recordmgs from fibres of the cochlear nerve were made by TASAKI (1954) in the guinea pig. These classical but necessarily limited results were greatly extended by ROSE, GALAMBOS, and HUGHES (1959) in the cat cochlear nucleus and by KATSUKI and co-workers (KATSUKI et at. , 1958, 1961, 1962) in the cat and monkey cochlear nerve. Perhaps the most significant developments have been the introduction of techniques for precise control of the acoustic stimulus and the quantitative analysis of neuronal response patterns, notably by the laboratories of KIANG (e. g. GERSTEIN and KIANG, 1960; KIANG et at. , 1962b, 1965a, 1967) and ROSE (e. g. ROSE et at. , 1967; HIND et at. , 1967). These developments have made possible a large number of quanti­ tative investigations of the behaviour of representative numbers of neurons at these levels of the peripheral auditory system under a wide variety of stimulus conditions. Most of the findings discussed herein have been obtained on anaest
Pindex Book 1975
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书目名称Auditory System影响因子(影响力)




书目名称Auditory System影响因子(影响力)学科排名




书目名称Auditory System网络公开度




书目名称Auditory System网络公开度学科排名




书目名称Auditory System被引频次




书目名称Auditory System被引频次学科排名




书目名称Auditory System年度引用




书目名称Auditory System年度引用学科排名




书目名称Auditory System读者反馈




书目名称Auditory System读者反馈学科排名




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Rosa Bottino,Johan Jeuring,Remco C. Veltkamperiments the authors were attempting to record from fibres in the cochlear nerve; subsequently, however, they concluded that the recordings had been from aberrant cells of the cochlear nucleus lying central to the glial margin of the VIII nerve (. and ., 1948). The first successful recordings from f
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Rosa Bottino,Johan Jeuring,Remco C. Veltkampse association with the major tracts interconnecting the cochlear nuclei with the inferior colliculus. The tracts, the acoustic striae and the lateral lemniscus, provide afferent inputs to the pontine auditory nuclei and the nuclei, in turn, make major contributions to the ascending pathways. In con
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Priscilla Haring,Harald Warmelinkn the central auditory pathway. These concepts have been derived from both anatomical and physiological studies and results from these two disciplines must be considered together if a functionally meaningful interpretation is to be obtained.
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https://doi.org/10.1007/978-3-319-50182-6 neurons. Its use in investigating the auditory cortex has provided a more detailed picture of the activity of the population of cortical neurons than that obtainable by previous techniques. The advantage of a more detailed look at cortical neural activity is tempered by the need for the collection
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Agnese Augello,Manuel Gentile,Frank Dignum, but their contributions are minor. Similar statements have been made repeatedly in the past by those working in audition. Contributors to present-day editions of physiology handbooks express the same view if, indeed, they refer to the pinnae at all. Generally speaking, they are correct. But, the e
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Lecture Notes in Computer Scienceed an orderly “anatomical frequency scale” cochlea and an obvious relationship between hair cell loss and hearing impairment. A better understanding of the current status of “behavior studies and inner ear damage” may be facilitated by a review of the studies and reports which contain audiometric be
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Teresa de la Hera Conde-Pumpidoal pathways in order to understand the neural basis of auditory discrimination*. may be divided into four periods; each period represents a time during which new methods were being developed that led to new information: (A) 1860–1900; (B) 1900–1930; (C) 1930–1940; (D) 1940–1975. Throughout all of th
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