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Titlebook: Cerebellar Cortex; Cytology and Organiz Sanford L. Palay,Victoria Chan-Palay Book 1974 Springer-Verlag Berlin · Heidelberg 1974 Gehirnrinde

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書目名稱Cerebellar Cortex
副標(biāo)題Cytology and Organiz
編輯Sanford L. Palay,Victoria Chan-Palay
視頻videohttp://file.papertrans.cn/224/223271/223271.mp4
圖書封面Titlebook: Cerebellar Cortex; Cytology and Organiz Sanford L. Palay,Victoria Chan-Palay Book 1974 Springer-Verlag Berlin · Heidelberg 1974 Gehirnrinde
描述The origins of this book go back to the first electron microscopic studies of the central nervous system. The cerebellar cortex was from the first an object of close study in the electron microscope, repeating in modern cytology and neuroanatomy the role it had in the hands of RAMON y CAJAL at the end of the nineteenth century. The senior author vividly remembers a day early in 1953 when GEORGE PALADE, with whom he was then working, showed him an electron micrograph of a cerebellar glomerulus, saying "That is what the synapse should look like. " It is true that the tissue was swollen and the mitochondria were exploded, but all of the essentials of synaptic structure were visible. At that time small fragments of tissue, fixed by immersion in osmium tetroxide and embedded in methacrylate, were laboriously sectioned with glass knives without any predetermined orientation and then examined in the electron microscope. After much searching, favorably preserved areas‘ were studied at the cytological level in order to recognize the parts of neurons and characterize them. Such procedures, dependent upon random sections and uncontrollable selection by a highly erratic technique of preservati
出版日期Book 1974
關(guān)鍵詞Gehirnrinde; anatomy; central nervous system; cytology; nervous system; tissue
版次1
doihttps://doi.org/10.1007/978-3-642-65581-4
isbn_softcover978-3-642-65583-8
isbn_ebook978-3-642-65581-4
copyrightSpringer-Verlag Berlin · Heidelberg 1974
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Simulation des Gleichraummotors,entury all of its cell-types have been recognized, and the course and terminations of their processes have been described countless times by numerous authors. Yet unanimity on many doubtful points has not been reached. Most of our knowledge of the cerebellar cortex derives from the early work of RAM
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https://doi.org/10.1007/978-3-658-34923-3 only five types of nerve cells: Purkinje cells, granule cells, basket cells, stellate cells, and Golgi cells. The first three of these classes are remarkably homogeneous, but the last two probably include several subtypes each, as has been indicated by RAMóN Y CAJAL (1911). Nevertheless, stellate a
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Bewertung und Auswahl von Opportunities,dered to be connectivetissue cells, and as late as 1900 BETHE doubted theirneural nature. Our present knowledge of them is duefirst to GOLGI (1874 and 1883), who demonstrated theirdendritic and axonal processes, and second to RAMóN YCAJAL (1888 a and b, 1911), whose precise description oftheir form
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,Anwendungsaufgaben für Lehre und Workshops,d been noted by others (e.g., by DENISSENKO, 1877), their processes had never been seen before, and their discovery was one of the many first fruits of his impregnation method that he was able to harvest long before other histologists became interested in it. The first kind of nerve cell had a long,
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Probleme der Organisationspraxisfibers, but it devotes its entire axonal output to the Purkinje cells with the possible exception of a few contacts on other basket cells and Golgi cells.Alarge number of widely dispersed parallel fibers converge on its dendrites, but its axon sends divergent impulses to only a small number of Purki
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Organisationswissenschaften und Common Sense of early authors, FUSARI (1883), PONTI (1897), SMIRNOW (1897), in addition to RAMóN YCAJAL (1889b), who in his great book on the nervous system (1911) gave SMIRNOW the credit for writing the most detailed and exact account of the different kinds of stellate cells.. SMIRNOW distinguished two kinds o
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