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嗅觉系统:破解谜题。

The olfactory system as a puzzle: playing with its pieces.

机构信息

Laboratory of Neuronal Plasticity and Neurorepair, Institute for Neuroscience of Castile and Leon, Universidad de Salamanca, Salamanca, Spain.

出版信息

Anat Rec (Hoboken). 2013 Sep;296(9):1383-400. doi: 10.1002/ar.22748. Epub 2013 Jul 31.

Abstract

The mammalian olfactory bulb (OB) has all the features of a whole mammalian brain but in a more reduced space: neuronal lamination, sensory inputs, afferences, or efferences to other centers of the central nervous system, or a contribution of new neural elements. Therefore, it is widely considered as "a brain inside the brain." Although this rostral region has the same origin and general layering as the other cerebral cortices, some distinctive features make it very profitable in experimentation in neurobiology: the sensory inputs are driven directly on its surface, the main output can be accessed anatomically, and new elements appear in it throughout adult life. These three morphological characteristics have been manipulated to analyze further the response of the whole OB. The present review offers a general outlook into the consequences of such experimentation in the anatomy, connectivity and neurochemistry of the OB after (a) sensory deprivation, mainly by naris occlusion; (b) olfactory deinnervation by means of olfactory epithelium damage, olfactory nerve interruption, or even olfactory tract disruption; (c) the removal of the principal neurons of the OB; and (d) management of the arrival of newborn interneurons from the rostral migratory stream. These experiments were performed using surgical or chemical methods, but also by means of the analysis of genetic models, some of whose olfactory components are missing, colorless or mismatching within the wild-type scenario of odor processing.

摘要

哺乳动物的嗅球(OB)具有完整哺乳动物大脑的所有特征,但在更简化的空间中:神经元分层、感觉输入、传入和传出到中枢神经系统的其他中心,或新的神经元素的贡献。因此,它被广泛认为是“大脑中的大脑”。尽管这个颅侧区域与其他大脑皮质具有相同的起源和一般分层,但一些独特的特征使其在神经生物学实验中非常有利:感觉输入直接驱动其表面,主要输出可以在解剖学上获得,并且在成年期会出现新的元素。这三个形态学特征已经被操纵,以进一步分析整个 OB 的反应。本综述提供了一个总体概述,介绍了在嗅球的解剖结构、连接和神经化学方面的实验结果,这些实验包括(a)感觉剥夺,主要通过鼻腔阻塞;(b)通过嗅上皮损伤、嗅神经中断甚至嗅束破坏进行嗅觉去神经支配;(c)嗅球主神经元的去除;以及(d)管理来自颅侧迁移流的新生中间神经元的到达。这些实验使用手术或化学方法进行,但也通过分析遗传模型进行,其中一些嗅觉成分缺失、无色或在嗅觉处理的野生型情景中不匹配。

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