Bower J M, Kassel J
Computation and Neural Systems Program, California Institute of Technology, Pasadena 91125.
J Comp Neurol. 1990 Dec 22;302(4):768-78. doi: 10.1002/cne.903020409.
Tactile responses in the granule cell layers of the cerebellar hemispheres of rats are topographically arranged as a series of patches each representing a different region of the body surface. Previous observations had suggested that patches representing specific body parts recur in similar folial positions in different individuals; however, these relationships were not quantified. In this study we make inter-animal comparisons of the detailed distribution of receptive fields in the granule cell layer of the crown of crus IIa by using physiological mapping techniques. The results suggest that maps from different individuals do, in fact, share several topological features. These include the regions of the body surface represented, the general proportions of these representations, the relative positions of patches representing the same body parts, and the organization of receptive fields within patches located in similar positions. The principal variability seen in these comparisons was in the detailed neighborhood relations between different patches. As a result of the analysis of the consistent and variable features of these maps, we propose and discuss a new role for these cerebellar regions in coordinating the acquisition of tactile sensory information.
大鼠小脑半球颗粒细胞层中的触觉反应在地形上呈一系列斑块排列,每个斑块代表身体表面的不同区域。先前的观察表明,代表特定身体部位的斑块在不同个体的相似小叶位置重复出现;然而,这些关系并未被量化。在本研究中,我们通过使用生理绘图技术对 Crus IIa 冠部颗粒细胞层中感受野的详细分布进行动物间比较。结果表明,来自不同个体的图谱实际上确实共享几个拓扑特征。这些特征包括所代表的身体表面区域、这些表征的大致比例、代表相同身体部位的斑块的相对位置,以及位于相似位置的斑块内感受野的组织。这些比较中看到的主要变异性在于不同斑块之间的详细邻域关系。通过对这些图谱的一致和可变特征进行分析,我们提出并讨论了这些小脑区域在协调触觉感觉信息获取中的新作用。