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首页> 外文期刊>The Journal of Comparative Neurology >Congruence of mossy fiber and climbing fiber tactile projections in the lateral hemispheres of the rat cerebellum.
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Congruence of mossy fiber and climbing fiber tactile projections in the lateral hemispheres of the rat cerebellum.

机译:大鼠小脑外侧半球的苔藓纤维与攀爬纤维的触觉投射一致。

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We have examined the spatial relationship between the mossy fiber and climbing fiber projections to crus IIa in the lateral hemispheres of the rat cerebellum. Experiments were performed in ketamine/xylazine anesthetized rats using extracellular recordings and high-density micromapping techniques. Responses were elicited using small, tactile stimuli applied to the perioral and forelimb regions at a rate of 0.5 Hz. In our first series of experiments we demonstrate that the primary (i.e., strongest) receptive field for a single Purkinje cell's complex spike is similar to the primary receptive field of the granule cells immediately subjacent to that Purkinje cell. In our second series of experiments we demonstrate that the granule cell region most strongly activated by a particular peripheral stimulus is immediately subjacent to the Purkinje cells whose complex spikes are also activated most strongly by the same stimulus. The region of climbing fibers activated by a localized peripheral stimulus is "patchy"; it clearly does not conform to the notion of a continuous microzone. These results support original observations first reported in the 1960s using evoked potential recording techniques that the mossy fiber and climbing fiber pathways converge in cerebellar cortex. However, we extend this earlier work to show that the two pathways converge at the level of single Purkinje cells. Many cerebellar theories assume that mossy fiber and climbing fiber pathways carry information from different peripheral locations or different modalities to cerebellar Purkinje cells. Our results appear to contradict this basic assumption for at least the tactile regions of the lateral hemispheres. Copyright 2001 Wiley-Liss, Inc.
机译:我们已经检查了苔藓纤维和攀爬纤维投射到大鼠小脑外侧半球中IIa的空间关系。实验是在氯胺酮/甲苯噻嗪麻醉的大鼠中使用细胞外记录和高密度微图技术进行的。使用以0.5 Hz的频率向口周和前肢区域施加小的触觉刺激引起反应。在我们的第一批实验中,我们证明了单个浦肯野细胞复杂突峰的主要(即最强)感受野类似于紧接在该浦肯野细胞之后的颗粒细胞的主要感受野。在我们的第二系列实验中,我们证明了由特定的外围刺激最强烈激活的颗粒细胞区域紧靠浦肯野细胞,其复杂的尖峰也被相同的刺激最强烈激活。由局部外围刺激激活的攀爬纤维区域为“斑片状”;它显然不符合连续微区的概念。这些结果支持了在1960年代首次报道的原始观察结果,该观察结果使用了诱发电位记录技术,即长满苔藓的纤维和攀爬的纤维在小脑皮层中汇合。但是,我们将这项较早的工作扩展为显示这两种途径在单个Purkinje细胞水平上会聚。许多小脑理论认为,苔藓纤维和攀爬纤维途径会将信息从不同的外围位置或不同的方式传递给小脑浦肯野细胞。我们的结果似乎与至少对侧半球的触觉区域的基本假设相矛盾。版权所有2001 Wiley-Liss,Inc.

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