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小鼠中丘脑向新皮层投射的切线组织

Tangential organization of thalamic projections to the neocortex in the mouse.

作者信息

Caviness V S, Frost D O

出版信息

J Comp Neurol. 1980 Nov 15;194(2):335-67. doi: 10.1002/cne.901940205.

Abstract

Using the anterograde degeneration technique, we examine the tangential organization of a thalamofugal axon population (class I of Frost and Caviness, '80) whose terminations are preferentially distributed to the middle tier (located in layers III and/or IV) of three radially separated tiers of thalamic projections to the neocortex. Less extensive data are also presented on the tangential organization of thalamofugal axon populations (class II of Frost and Caviness, '80) that do not terminate preferentially in the middle tier, but that are otherwise heterogeneous with respect to their radial pattern of intracortical termination. The projections of class I axons are distributed to all neocortical fields with the possible exception of fields 13,25, and 35. The class I projections to a given cortical field (with the possible exception of the cortex of the second somatosensory representation) originate in only one thalamic nucleus. The class I projections of an individual thalamic nucleus form a cortical representation of the nucleus that constitutes a "first order line-to-line" (topologic) transformation of the nuclear volume. The ensemble of class I projections forms a cortical representation of the corresponding thalamic regions that constitutes a "second order line-to-line" (non-topologic) transformation of the thalamic volume. Class II axons project to all neocortical fields. Classs II and class I projections contrast in that the class II projections of multiple thalamic nuclei overlap in the tangential plane of any given sector of the cortex. While the class II projections of the intralaminar nuclei and the widely projecting ventromedial nucleus are known to be topologically organized, the tangential organization of class II projections arising in other nuclei is incompletely understood.

摘要

运用顺行性变性技术,我们研究了丘脑传出轴突群体(弗罗斯特和卡维尼斯1980年分类中的I类)的切线组织,其终末优先分布于丘脑向新皮层投射的三个径向分离层中的中间层(位于III层和/或IV层)。我们还提供了关于丘脑传出轴突群体(弗罗斯特和卡维尼斯1980年分类中的II类)切线组织的较少数据,这些轴突群体并非优先终止于中间层,而是在皮质内终止的径向模式方面存在异质性。I类轴突的投射分布于所有新皮层区域,可能13区、25区和35区除外。向特定皮层区域的I类投射(可能第二躯体感觉代表区的皮层除外)仅起源于一个丘脑核。单个丘脑核的I类投射形成该核的皮层代表,构成核体积的“一级点对点”(拓扑)转换。I类投射的总体形成相应丘脑区域的皮层代表,构成丘脑体积的“二级点对点”(非拓扑)转换。II类轴突投射到所有新皮层区域。II类和I类投射的不同之处在于,多个丘脑核的II类投射在皮层任何给定扇形的切线平面上重叠。虽然已知板内核和广泛投射腹内侧核的II类投射是拓扑组织的,但来自其他核的II类投射的切线组织尚未完全了解。

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