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大鼠小脑的功能和抗原图谱:小叶IXa中的zebrin分区和触须感受野

Functional and antigenic maps in the rat cerebellum: zebrin compartmentation and vibrissal receptive fields in lobule IXa.

作者信息

Chockkan V, Hawkes R

机构信息

Department of Anatomy, Faculty of Medicine, University of Calgary, Alberta, Canada.

出版信息

J Comp Neurol. 1994 Jul 1;345(1):33-45. doi: 10.1002/cne.903450103.

Abstract

The mammalian cerebellum is compartmentalized, both structurally and biochemically, into an array of parasagittal bands. In the adult rat, bands can be shown by immunocytochemical staining of a Purkinje cell subset with the monoclonal antibody antizebrin II. In contrast to the bands revealed by the zebrin II distribution, electrophysiological maps of tactile representations show an apparently quite different organization, a patchwork somatotopy of interwoven small receptive fields. We have compared zebrin II compartmentation with the distribution of vibrissal receptive fields in the dorsal face of lobule IXa. Nine adult rats were studied. Zebrin II immunocytochemistry revealed a zebrin II+ band at the midline (P1+) and three others (P2+, P3+, P4+) arrayed laterally, separated by the P1-, P2-, and P3- bands of unstained Purkinje cells. The only significant source of variability was that P3- was sometimes ill defined, making the P3+ and P4+ difficult to distinguish. Electrophysiological recording in the granular layer of lobule IXa identified two reproducible vibrissal receptive fields on each side of the midline (V1 and V2), with a third, more laterally, identified occasionally (V3). When receptive field maps were constructed and aligned with the zebrin II compartment maps from the same individuals, the V1 receptive field was centered on P1-, V2 on P2-, and V3 on P3-. However, the receptive fields typically extended beyond the P- band into the neighboring P+ to each side. Thus there is a simple, reproducible vibrissal receptive field organization in lobule IXa that bears a constant relationship to the Purkinje cell compartmentation revealed by zebrin II immunocytochemistry. The biochemical parcellation of the cortex may serve to organize the afferent and efferent projection topography and thus to align the sensory and motor maps in the cerebellum.

摘要

哺乳动物的小脑在结构和生化方面都被分隔成一系列矢状旁带。在成年大鼠中,通过用抗zebrin II单克隆抗体对浦肯野细胞亚群进行免疫细胞化学染色可以显示出这些带。与zebrin II分布所揭示的带相比,触觉表征的电生理图谱显示出一种明显不同的组织方式,即交织的小感受野的拼凑式躯体定位。我们将zebrin II分隔与小叶IXa背面的触须感受野分布进行了比较。研究了9只成年大鼠。zebrin II免疫细胞化学显示在中线处有一条zebrin II阳性带(P1+),以及另外三条(P2+、P3+、P4+)横向排列,被未染色的浦肯野细胞的P1-、P2-和P3-带隔开。唯一显著的变异性来源是P3-有时定义不明确,使得P3+和P4+难以区分。在小叶IXa颗粒层进行的电生理记录在中线两侧各识别出两个可重复的触须感受野(V1和V2),偶尔在更外侧还能识别出第三个(V3)。当构建感受野图谱并与来自同一动物的zebrin II分隔图谱对齐时,V1感受野以P1-为中心,V2以P2-为中心,V3以P3-为中心。然而,感受野通常会超出P-带延伸到两侧相邻的P+带。因此,在小叶IXa中存在一种简单、可重复的触须感受野组织方式,它与zebrin II免疫细胞化学所揭示的浦肯野细胞分隔有着恒定的关系。皮质的生化分区可能有助于组织传入和传出投射的拓扑结构,从而使小脑中的感觉和运动图谱对齐。

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