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豚鼠中从背侧耳蜗核到听觉丘脑的直接、短潜伏期投射的证据。

Evidence for a direct, short latency projection from the dorsal cochlear nucleus to the auditory thalamus in the guinea pig.

作者信息

Anderson L A, Malmierca M S, Wallace M N, Palmer A R

机构信息

MRC Institute of Hearing Research, University Park, Nottingham, NG7 2RD, UK.

出版信息

Eur J Neurosci. 2006 Jul;24(2):491-8. doi: 10.1111/j.1460-9568.2006.04930.x. Epub 2006 Jul 12.

Abstract

The auditory thalamus (medial geniculate body, MGB) receives its main ascending input from the inferior colliculus (IC), which was considered to be an obligatory relay for all auditory inputs to the MGB. However, recent anatomical evidence in the rat [ (Malmierca et al. 2002) J. Neurosci., 22, 10891-10897] has confirmed the presence of a direct pathway from the dorsal cochlear nucleus (DCN) to the medial MGB, bypassing the IC, as previously suggested in the chimpanzee [ (Strominger et al. 1977) J. Comp. Neurol., 172, 349-366]. We show that this direct pathway is also present in the guinea pig and apparently results in short latency responses in the thalamus. Injection of anterograde tracer into the DCN of five adult guinea pigs revealed terminal boutons and axonal swellings distributed throughout the medial MGB, but absent from all other MGB subdivisions. Electrophysiological recordings made from 39 adult guinea pigs (24 male & 15 female) showed neurons in the medial MGB responded with significantly shorter latencies to acoustic clicks (7.8 ms) than those from the ventral (11.0 ms), dorsal (14.4 ms), or shell (16.5 ms) MGB, consistent with the direct pathway from the DCN. The function of the direct pathway is not known but may be related to the fast responses and the role of the medial MGB in integrating combined somatosensory and auditory inputs. Short latency responses may be important in priming the auditory cortex to prepare it for rapid analysis and in recruiting the amygdala for rapid emotional responses such as fear.

摘要

听觉丘脑(内侧膝状体,MGB)主要的上行输入来自下丘(IC),下丘曾被认为是所有传入MGB的听觉输入的必经中继站。然而,近期在大鼠上的解剖学证据[(马尔米耶卡等人,2002年)《神经科学杂志》,22卷,10891 - 10897页]证实了存在一条从蜗背侧核(DCN)到内侧MGB的直接通路,绕过了IC,正如之前在黑猩猩上所提示的那样[(斯特罗明格等人,1977年)《比较神经学杂志》,172卷,349 - 366页]。我们发现豚鼠中也存在这条直接通路,并且该通路显然会在丘脑中产生短潜伏期反应。向5只成年豚鼠的DCN注射顺行示踪剂后发现,终末小体和轴突膨体分布于整个内侧MGB,但在MGB的其他所有亚区均未出现。对39只成年豚鼠(24只雄性和15只雌性)进行的电生理记录显示,内侧MGB中的神经元对听觉滴答声的反应潜伏期(7.8毫秒)明显短于腹侧(11.0毫秒)、背侧(14.4毫秒)或壳核(16.5毫秒)MGB中的神经元,这与来自DCN的直接通路相符。直接通路的功能尚不清楚,但可能与快速反应以及内侧MGB在整合躯体感觉和听觉联合输入中的作用有关。短潜伏期反应可能在使听觉皮层做好快速分析的准备以及促使杏仁核产生如恐惧等快速情绪反应方面具有重要意义。

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