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首页> 外文期刊>The Journal of Physiology >Redefining the components of central CO2 chemosensitivity--towards a better understanding of mechanism.
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Redefining the components of central CO2 chemosensitivity--towards a better understanding of mechanism.

机译:重新定义中心CO2化学敏感性的组成部分-以便更好地了解其机理。

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The field of CO(2) chemosensitivity has developed considerably in recent years. There has been a mounting number of competing nuclei proposed as chemosensitive along with an ever increasing list of potential chemosensory transducing molecules. Is it really possible that all of these areas and candidate molecules are involved in the detection of chemosensory stimuli? How do we discriminate rigorously between molecules that are chemosensory transducers at the head of a physiological reflex versus those that just happen to display sensitivity to a chemosensory stimulus? Equally, how do we differentiate between nuclei that have a primary chemosensory function, versus those that are relays in the pathway? We have approached these questions by proposing rigorous definitions for the different components of the chemosensory reflex, going from the salient molecules and ions, through the components of transduction to the identity of chemosensitive cells and chemosensitive nuclei. Our definitions include practical and rigorous experimental tests that can be used to establish the identity of these components. We begin by describing the need for central CO(2) chemosensitivity and the problems that the field has faced. By comparing chemosensory mechanisms to those in the visual system we suggest stricter definitions for the components of the chemosensory pathway. We then, considering these definitions, re-evaluate current knowledge of chemosensory transduction, and propose the 'multiple salient signal hypothesis' as a framework for understanding the multiplicity of transduction mechanisms and brain areas seemingly involved in chemosensitivity.
机译:近年来,CO(2)化学敏感性领域已得到很大发展。已经提出越来越多的竞争性核对化学敏感,并且潜在的化学传感转导分子的清单也在不断增加。所有这些区域和候选分子是否真的可能参与化学感应刺激的检测?我们如何严格区分在生理反射的头部是化学感应换能器的分子与恰好对化学感应刺激表现出敏感性的分子之间的区别?同样,我们如何区分具有主要化学感应功能的核与该通路中的中继核?我们针对化学感应反射的不同组成部分提出了严格的定义,从显着的分子和离子,通过转导到化学敏感细胞和化学敏感核的身份,提出了严格的定义。我们的定义包括实用而严格的实验测试,可用于确定这些组件的身份。我们首先描述对中央CO(2)的化学敏感性的需求以及该领域所面临的问题。通过将化学感应机制与视觉系统中的化学感应机制进行比较,我们建议对化学感应途径的成分进行更严格的定义。然后,我们考虑这些定义,重新评估当前的化学感应转导知识,并提出“多重显着信号假说”作为框架,以了解似乎涉及化学敏感性的转导机制和大脑区域的多样性。

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