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动物的神经味觉处理比较分析。

A comparative analysis of neural taste processing in animals.

机构信息

Centre de Recherches sur la Cognition Animale, Université de Toulouse, 31062 Toulouse Cedex 9, France.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2011 Jul 27;366(1574):2171-80. doi: 10.1098/rstb.2010.0327.

Abstract

Understanding taste processing in the nervous system is a fundamental challenge of modern neuroscience. Recent research on the neural bases of taste coding in invertebrates and vertebrates allows discussion of whether labelled-line or across-fibre pattern encoding applies to taste perception. While the former posits that each gustatory receptor responds to one stimulus or a very limited range of stimuli and sends a direct 'line' to the central nervous system to communicate taste information, the latter postulates that each gustatory receptor responds to a wider range of stimuli so that the entire population of taste-responsive neurons participates in the taste code. Tastes are represented in the brain of the fruitfly and of the rat by spatial patterns of neural activity containing both distinct and overlapping regions, which are in accord with both labelled-line and across-fibre pattern processing of taste, respectively. In both animal models, taste representations seem to relate to the hedonic value of the tastant (e.g. palatable versus non-palatable). Thus, although the labelled-line hypothesis can account for peripheral taste processing, central processing remains either unknown or differs from a pure labelled-line coding. The essential task for a neuroscience of taste is, therefore, to determine the connectivity of taste-processing circuits in central nervous systems. Such connectivity may determine coding strategies that differ significantly from both the labelled-line and the across-fibre pattern models.

摘要

理解神经系统中的味觉处理是现代神经科学的一个基本挑战。最近对无脊椎动物和脊椎动物味觉编码的神经基础的研究,使得人们可以讨论标记线或跨纤维模式编码是否适用于味觉感知。前者假设每个味觉受体对一种刺激或非常有限的刺激范围做出反应,并通过直接的“线”向中枢神经系统发送味觉信息,而后者假设每个味觉受体对更广泛的刺激范围做出反应,从而使整个味觉反应神经元群体参与味觉编码。味觉在果蝇和大鼠的大脑中由包含独特和重叠区域的神经活动空间模式来表示,这分别与味觉的标记线和跨纤维模式处理一致。在这两种动物模型中,味觉表现似乎与味觉剂的愉悦值(例如可口与不可口)有关。因此,尽管标记线假说可以解释外围味觉处理,但中枢处理仍然未知或与纯标记线编码不同。因此,味觉神经科学的基本任务是确定中枢神经系统中味觉处理回路的连接。这种连接可能决定了编码策略,这些策略与标记线和跨纤维模式模型有很大的不同。

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本文引用的文献

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The taste of carbonation.碳酸的味道。
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