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大鼠屏状核协调但不整合体感和运动皮层信息。

Rat claustrum coordinates but does not integrate somatosensory and motor cortical information.

机构信息

Department of Neural and Behavioral Sciences, Center for Neural Engineering, Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Neurosci. 2012 Jun 20;32(25):8583-8. doi: 10.1523/JNEUROSCI.1524-12.2012.

Abstract

The function of the claustrum is a fundamental issue in neuroscience. Anatomical data indicate that the rat claustrum is part of an interhemispheric circuit that could be involved in the bilateral coordination of whisker movements. Given that whisking is a somesthetic-guided motor behavior, the goal of the current study was to elucidate the connections of the claustrum with respect to the whisker representations in the primary somatosensory (wSI) and motor (wMI) cortical areas. Anterograde tracer injections showed that wMI projects most densely to the claustrum in the contralateral hemisphere, whereas wSI does not project to the claustrum in either hemisphere. Injections of different retrograde tracers into wMI and wSI of the same animal revealed intermingled populations of labeled neurons in the claustrum, as well as many double-labeled neurons. This indicates that the same part of the claustrum projects to the whisker representations in both SI and MI. Finally, injections of different anterograde tracers in the wMI regions of both hemispheres were combined with a retrograde tracer injection in wSI, and this produced dense terminal labeling around retrogradely labeled neurons in the claustrum of both hemispheres. Although the rodent claustrum is probably involved in the interhemispheric coordination of the MI and SI whisker representations, it does not receive inputs from both of these cortical regions. Hence, the claustrum should not be universally regarded as an integrator of somesthetic and motor information.

摘要

屏状核的功能是神经科学中的一个基本问题。解剖学数据表明,大鼠屏状核是大脑两半球间回路的一部分,可能参与了胡须运动的双侧协调。鉴于胡须运动是一种躯体感觉引导的运动行为,本研究的目的是阐明屏状核与初级体感(wSI)和运动(wMI)皮质区的胡须代表之间的连接。顺行示踪剂注射表明,wMI 最密集地投射到对侧半球的屏状核,而 wSI 则不投射到两个半球的屏状核。将不同的逆行示踪剂注射到同一动物的 wMI 和 wSI 中,揭示了屏状核中有标记神经元的混杂群体,以及许多双标记神经元。这表明,同一部分屏状核投射到 SI 和 MI 中的胡须代表。最后,将不同的顺行示踪剂分别注射到两个半球的 wMI 区域,并结合逆行示踪剂注射到 wSI 中,这导致两个半球的屏状核中的逆行标记神经元周围出现密集的终末标记。虽然啮齿动物的屏状核可能参与了 MI 和 SI 胡须代表的大脑两半球间协调,但它并不接收来自这两个皮质区的输入。因此,屏状核不应被普遍视为躯体感觉和运动信息的整合器。

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