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Titlebook: New Frontiers in Respiratory Control; XIth Annual Oxford C Ikuo Homma,Hiroshi Onimaru,Yoshinosuke Fukuchi Conference proceedings 2010 The E

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书目名称New Frontiers in Respiratory Control
副标题XIth Annual Oxford C
编辑Ikuo Homma,Hiroshi Onimaru,Yoshinosuke Fukuchi
视频video
概述XIth Oxford Conference Proceedings..Modeling and Control of Breathing..Includes supplementary material:
丛书名称Advances in Experimental Medicine and Biology
图书封面Titlebook: New Frontiers in Respiratory Control; XIth Annual Oxford C Ikuo Homma,Hiroshi Onimaru,Yoshinosuke Fukuchi Conference proceedings 2010 The E
描述Breathing is performed by the rhythmic contraction of respiratory muscles. It ma- tains homeostasis of the organism by taking in the oxygen necessary to live and work and by controlling the level of CO within the organism. At first glance, breathing 2 seems simple; however, it is produced by a complex system in the brain with various afferents and efferents. The control of breathing is of the utmost importance in s- taining life, and although more than 150 years have passed since research on brea- ing control was first begun, many unsolved mysteries still remain. Breathing is like watching the tides at a beach that are created by the vast, complex open sea. The first Oxford Conference on Modeling and Control of Breathing was held 30 years ago in September of 1978 at the University Laboratory of Physiology in Oxford, England. During this first conference, the participants engaged in a hot d- cussion on the problem of whether breathing rhythm was produced by pacemaker cells or a neural network. This was before the discovery of the Bötinger complex in the medulla, and at the time, central chemoreceptive areas were still the focus of research. This conference was an especially unforget
出版日期Conference proceedings 2010
关键词Respiratory Medicine; brainstem; chemoreception; control of respiration; neurons; respiratory rhythm gene
版次1
doihttps://doi.org/10.1007/978-1-4419-5692-7
isbn_softcover978-1-4614-2564-9
isbn_ebook978-1-4419-5692-7Series ISSN 0065-2598 Series E-ISSN 2214-8019
issn_series 0065-2598
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Science+Busines
The information of publication is updating

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Adrenaline Modulates on the Respiratory Network Developmentat, adrenaline switched from enhancement to depression of the respiratory rhythm. Adrenaline modulated GABAergic synaptic transmission to respiratory neurons in late developmental stage. These results suggest that the involvement of central adrenergic modulation on the respiratory network maturation.
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Paradoxical Potentiation of Exercise Hyperpnea in Congestive Heart Failure Contradicts Sherrington Cert distinct influences on control of breathing. These paradoxical clinical phenomena are at variance with the conventional chemoreflex model (Johnson 2001), but appear to be consistent with the predictions of the optimization model (Poon 2001; Poon, Tin et al. 2007).
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Fictive Lung Ventilation in the Isolated Brainstem Preparation of the Aquatic Frog, Xenopus Laevisar cycle similar to buccal oscillation in ranid frogs, were observed in the cranial nerve V and X but not in the hypoglossal and the third spinal nerve. These results suggest that Xenopus is capable of oscillating buccal rhythm within the brainstem.
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A Simplified Model for Explaining Negative Feedback to Beginners in Life Sciencesise. By having direction in the “result”, such as INCREASE in speed, INCREASE in O., and DECREASE in CO., the same diagram could be used to present CO. and O. having the opposite effect on respiration.
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Anatomical Changes of Phrenic Motoneurons During Developmentevelopment. Cell bodies of phrenic motoneurons migrate into the ventromedial region of the ventral horn of C3-C6 by E13-E14 in the rat. During development the sizes and surface areas of phrenic motoneurons are increased with changes in dendritic morphology.
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