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组织学定义的小鼠听觉丘脑细分之间的生理学差异。

Physiological differences between histologically defined subdivisions in the mouse auditory thalamus.

机构信息

Ear Institute, University College London, London WC1X 8EE, UK.

出版信息

Hear Res. 2011 Apr;274(1-2):48-60. doi: 10.1016/j.heares.2010.12.016. Epub 2010 Dec 24.

Abstract

The auditory thalamic area includes the medial geniculate body (MGB) and the lateral part of the posterior thalamic nucleus (Pol). The MGB can be subdivided into a ventral subdivision, forming part of the lemniscal (primary) auditory pathway, and medial and dorsal subdivisions, traditionally considered (alongside the Pol) part of the non-lemniscal (secondary) pathway. However, physiological studies of the auditory thalamus have suggested that the Pol may be more appropriately characterised as part of the lemniscal pathway, while the medial MGB may be part of a third (polysensory) pathway, with characteristics of lemniscal and non-lemniscal areas. We document physiological properties of neurons in histologically identified areas of the MGB and Pol in the anaesthetised mouse, and present evidence in favour of a distinctive role for medial MGB in central auditory processing. In particular, medial MGB contains a greater proportion of neurons with short first-spike latencies and high response probabilities than either the ventral or dorsal MGB, despite having low spontaneous rates. Therefore, medial MGB neurons appear to fire more reliably in response to auditory input than neurons in even the lemniscal, ventral subdivision. Additionally, responses in the Pol are more similar to those in the ventral MGB than the dorsal MGB.

摘要

听觉丘脑区包括内侧膝状体(MGB)和后丘脑核的外侧部分(Pol)。MGB 可细分为腹侧亚区,形成了传入性(初级)听觉通路的一部分,以及内侧和背侧亚区,传统上被认为(与 Pol 一起)是非传入性(次级)通路的一部分。然而,听觉丘脑的生理学研究表明,Pol 可能更适合被描述为传入性通路的一部分,而内侧 MGB 可能是第三(多感觉)通路的一部分,具有传入性和非传入性区域的特征。我们在麻醉小鼠中记录了组织学上确定的 MGB 和 Pol 区域的神经元的生理特性,并提供了支持内侧 MGB 在中枢听觉处理中具有独特作用的证据。特别是,内侧 MGB 中具有较短首次放电潜伏期和高反应概率的神经元比例高于腹侧或背侧 MGB,尽管其自发率较低。因此,内侧 MGB 神经元在对听觉输入的反应中似乎比传入性、腹侧亚区的神经元更可靠。此外,Pol 的反应与腹侧 MGB 的反应更相似,而与背侧 MGB 的反应则不相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffed/3078334/68a75f6f40e3/gr1.jpg

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