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恒河猴中从副感觉联合区到脑桥的纤维通路行程

Course of the fiber pathways to pons from parasensory association areas in the rhesus monkey.

作者信息

Schmahmann J D, Pandya D N

机构信息

Department of Neurology, Massachusetts General Hospital, Boston 02114.

出版信息

J Comp Neurol. 1992 Dec 8;326(2):159-79. doi: 10.1002/cne.903260202.

Abstract

The course of the fiber pathways to pons from parasensory association areas in the rhesus monkey was investigated by injection of tritiated amino acids and the technique of autoradiography. Results confirm the projection to pons from parasensory association areas in the temporal, parietal, and occipital lobes and extend these observations to include the posterior parahippocampal gyrus. The findings reveal that the white matter of the posterior limb of the internal capsule above the midpoint of the lateral geniculate nucleus, and at the medial aspect of the lateral geniculate nucleus, comprise common regions through which these corticopontine fibers lead to the basis pontis. The fibers demonstrate a certain degree of topographic organization in the posterior limb of the capsule above the lateral geniculate nucleus and also in the cerebral peduncle. Taken together with previous observations concerning the termination patterns of these associative corticopontine projections, it would appear that the corticopontine system consists of segregated and partially overlapping pathways, which are to some extent distinguishable anatomically at each stage of their trajectory from origin to destination. Furthermore, the existence of a common area through which all parasensory associative input to pons is transmitted suggests that a precisely located lesion in this part of the corticopontocerebellar circuit may disrupt the cerebellar access to higher order information derived from the parasensory associative regions.

摘要

通过注射氚标记氨基酸和放射自显影技术,对恒河猴感觉副联合区至脑桥的纤维通路进行了研究。结果证实了颞叶、顶叶和枕叶的感觉副联合区向脑桥的投射,并将这些观察结果扩展至海马旁回后部。研究结果显示,在外侧膝状体核中点上方的内囊后肢白质以及外侧膝状体核的内侧,是这些皮质脑桥纤维通向脑桥基底部的共同区域。这些纤维在外侧膝状体核上方的内囊后肢以及大脑脚中表现出一定程度的拓扑组织。结合先前关于这些联合皮质脑桥投射终止模式的观察结果,似乎皮质脑桥系统由分离且部分重叠的通路组成,这些通路在从起源到终点的轨迹的每个阶段在一定程度上在解剖学上是可区分的。此外,存在一个所有至脑桥的感觉副联合输入都通过的共同区域,这表明在皮质脑桥小脑回路的这一部分发生精确定位的病变可能会扰乱小脑对来自感觉副联合区域的高级信息的获取。

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