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小鼠体感丘脑与皮层之间的轴突轨迹。

Axonal trajectories between mouse somatosensory thalamus and cortex.

作者信息

Bernardo K L, Woolsey T A

出版信息

J Comp Neurol. 1987 Apr 22;258(4):542-64. doi: 10.1002/cne.902580406.

DOI:10.1002/cne.902580406
PMID:3584549
Abstract

An in vitro brain slice preparation has been used to label fibers connecting the somatosensory thalamus and cortex of the mouse. In 400-800-micron brain slices, the pathway between the ventrobasal complex and somatosensory cortex was labeled under direct vision with horseradish peroxidase crystals (HRP), HRP-Nonidet P-40 (NP40) detergent chips, or a solution of HRP/dimethylsulfoxide. Thalamocortical and corticofugal fibers are organized into a plexiform system of bundles that appears to be fairly constant from animal to animal. Bundles of fibers projecting from the ventrobasal complex course between regularly spaced groups of thalamic neurons. Thalamocortical axons do not invariably leave the thalamus via the fiber bundle closest to the perikarya. Thus, nearest-neighbor relationships are abolished before these axons have even left the thalamus. The axon bundles traverse the thalamic reticular nucleus lateral to the complex. The axons then rotate about one another, analogous to the coiling of strands in rope about a central axis. This accounts for the well known 180 degrees rotation in the mediolateral direction between thalamic and cortical maps. Laterally, fiber bundles converge and diverge within the internal capsule so that nearest-neighbor relationships are lost. Individual thalamocortical axons do not bifurcate proximal to the subcortical white matter. After single bundles of fibers reach a point just below the subcortical white matter, their individual fibers diverge widely. Within the subcortical white matter most afferent fibers make a small dorsally concave loop prior to taking one of two possible courses: some of the fibers ascend directly into the overlying cortex usually angled towards the dorsal surface of the brain; other fibers run in the subcortical white matter for variable distances prior to ascending into cortex. Within somatosensory cortex, smooth axons branch near their terminals in layers IV and VI. Axonal terminal and branching patterns of these axons within somatosensory cortex are similar to those found in in vivo preparations. Most axons are smooth, but other axons are beaded. Some beaded axons project to layer I. Corticofugal fibers are labeled. Fibers leaving somatosensory cortex have an angle of descent opposite to the angle of ascent for afferent fibers, and are often fasciculated in the cortex and subcortical white matter. Within the subcortical white matter efferent fibers often loop in a direction opposite to that of afferent fibers. Corticofugal fibers occasionally give off a collateral corticostriatal branch within the internal capsule.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

一种体外脑片制备方法已被用于标记连接小鼠体感丘脑和皮质的纤维。在400 - 800微米厚的脑片中,腹侧基底复合体与体感皮质之间的通路在直视下用辣根过氧化物酶晶体(HRP)、HRP - 壬基酚聚氧乙烯醚(NP40)去污剂芯片或HRP/二甲基亚砜溶液进行标记。丘脑皮质纤维和皮质离心纤维组成一个束状的网状系统,不同动物之间该系统似乎相当恒定。从腹侧基底复合体投射出的纤维束在规则排列的丘脑神经元群之间穿行。丘脑皮质轴突并非总是通过最靠近神经元胞体的纤维束离开丘脑。因此,在这些轴突甚至还未离开丘脑之前,最近邻关系就已被打破。轴突束穿过复合体外侧的丘脑网状核。然后轴突彼此环绕,类似于绳子中的股线围绕中心轴盘绕。这就解释了丘脑和皮质图谱在内外侧方向上众所周知的180度旋转。在外侧,纤维束在内囊内汇聚和发散,从而使最近邻关系消失。单个丘脑皮质轴突在皮质下白质近端不分叉。一束束纤维到达皮质下白质下方一点后,其单个纤维会广泛散开。在皮质下白质内,大多数传入纤维在采取两种可能路径之一之前会形成一个小的背侧凹陷环:一些纤维直接向上进入上方的皮质,通常向脑的背表面倾斜;其他纤维在皮质下白质中走行不同距离后再向上进入皮质。在体感皮质内,光滑的轴突在IV层和VI层靠近其终末处分支。这些轴突在体感皮质内的轴突终末和分支模式与在体内制备中发现的相似。大多数轴突是光滑的,但其他轴突有珠状结构。一些有珠状结构的轴突投射到I层。皮质离心纤维被标记。离开体感皮质的纤维下降角度与传入纤维的上升角度相反,并且在皮质和皮质下白质中常成束。在皮质下白质内,传出纤维的环行方向通常与传入纤维相反。皮质离心纤维偶尔在内囊内发出一条皮质纹状体侧支。(摘要截断于400字)

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