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屏状核:大鼠定向、兴奋性、内在连接性的一个实例。

Claustrum: a case for directional, excitatory, intrinsic connectivity in the rat.

作者信息

Orman Rena

机构信息

Department of Physiology and Pharmacology, State University of New York Downstate Medical Center, 450 Clarkson Avenue, MSC 31, Brooklyn, NY, 11203, USA.

出版信息

J Physiol Sci. 2015 Nov;65(6):533-44. doi: 10.1007/s12576-015-0391-6. Epub 2015 Sep 2.

Abstract

Claustrum, a gray matter structure that underlies the neocortex, is reciprocally connected with many neocortical and limbic cortical areas. This connectivity positions claustrum ideally for the integration or coordination of widespread cortical activity. In anatomical studies using multiple planes of section, claustrum has distinct subregions based on latexin immunohistochemistry, and an approximately rostro-caudal alignment of fusiform cells supporting a laminar intrinsic organization. Physiological studies of claustral connectivity in disinhibited brain slices demonstrate (1) intrinsic connectivity sufficient to generate spontaneous synchronized burst discharges, (2) activity spread within the oblique laminae that contained the principal cellular axis, and (3) segregation of activity as evidenced by the absence of spread within coronal planes. Activity spread depended on glutamatergic synaptic transmission, and activity restrictions did not depend on inhibitory circuits. We conclude that the claustrum has an intrinsic excitatory connectivity that is constrained in approximately rostro-caudal laminae, with minimal cross-communication between laminae. Further, claustrum has the intrinsic capability of generating synchronized population activity and facilitating its spread within laminae, a feature that may contribute to seizure generation and spread.

摘要

屏状核是位于新皮质下方的灰质结构,与许多新皮质和边缘皮质区域相互连接。这种连接方式使屏状核在整合或协调广泛的皮质活动方面具有理想的位置。在使用多个切片平面的解剖学研究中,根据乳清酸蛋白免疫组织化学,屏状核具有不同的亚区域,并且梭形细胞大致呈前后排列,支持层状内在组织。在去抑制脑片上对屏状核连接性的生理学研究表明:(1)内在连接性足以产生自发同步爆发性放电;(2)活动在包含主要细胞轴的斜层内传播;(3)如在冠状平面内无活动传播所证明的那样,活动存在分离。活动传播依赖于谷氨酸能突触传递,而活动限制不依赖于抑制性回路。我们得出结论,屏状核具有内在兴奋性连接,这种连接在大致的前后层中受到限制,层间交叉通信极少。此外,屏状核具有产生同步群体活动并促进其在层内传播的内在能力,这一特征可能有助于癫痫发作的产生和传播。

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