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Titlebook: Crustacean Experimental Systems in Neurobiology; Konrad Wiese Conference proceedings 2002 Springer-Verlag Berlin Heidelberg 2002 Crustacea

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书目名称Crustacean Experimental Systems in Neurobiology
编辑Konrad Wiese
视频video
概述First book to concentrate on crustaceans as experimental systems for neuroscientists
图书封面Titlebook: Crustacean Experimental Systems in Neurobiology;  Konrad Wiese Conference proceedings 2002 Springer-Verlag Berlin Heidelberg 2002 Crustacea
描述This book represents Part 2 of a venture started by distinguished neuroscientists to visualize and advertise the experimentally advantageous preparations of the crustacean nervous system. The advantage is a combination of ease of dissection of key structures and the possibility of repeatedly accessing identified individual cells to measure the detailed response of the system to the experimentally imposed stimulus program. Of course, the neurosciences have to focus their research on the nervous system of mammals and man in order to understand the principles of function and their regulation if malfunctions occur. This is in line with efforts to investigate nervous systems throughout the animal kingdom. The specific potential of the encountered systems for exploratory research into hitherto unexplained functions of the brain may very well be a key to new insights. The simply organized nervous system of crustaceans performs tasks of vital importance imposed on the organism. Hence this system consists of a complete set of neural circuitry open for inspection and measurement by systematic investigation. The first volume, The Crustacean Nervous System, contains exhaustive reports on exper
出版日期Conference proceedings 2002
关键词Crustaceans; Crustaceen; Physiologie; behavior; nervous system; neuro; neurobiology; physiology; Model inver
版次1
doihttps://doi.org/10.1007/978-3-642-56092-7
isbn_softcover978-3-642-62860-3
isbn_ebook978-3-642-56092-7
copyrightSpringer-Verlag Berlin Heidelberg 2002
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Crayfish Escape Behavior: Lessons Learnedroscientific interest. However, the fact is that when neurobiologists have studied the circuitry that mediates escape in crayfish, they have not simply been elucidating neural circuitry and mechanisms that are of arcane zoological interest; rather, they have been making discovery after discovery tha
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The Abdominal Muscle Receptor Organ of Crayfish and Lobsters: Current Issuessition and movement of the segments to which they attach (Wiersma et al. 1953). The SRs are embedded in an innervated receptor muscle strand so that, although they lie in the periphery, their level of activity can be adjusted from the central nervous system. Because the fine receptor muscles lie in
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Synergies Between Disparate Motor Systems: Loci For Behavioral Evolutionin 1971; Namba and Mulloney 1999; Mulloney, this Vol.) and neuromodulatory neurons (Bartos et al. 1999; Blitz et al. 1999; Marder this vol), provide much of the adaptive flexibility of motor behavior as a whole. This organization suggests that evolutionary flexibility of motor systems might also be
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