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Information to cerebellum on spinal motor networks mediated by the dorsal spinocerebellar tract

机译:脊髓小脑背道介导小脑的脊髓运动网络信息

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摘要

The main objective of this review is to re-examine the type of information transmitted by the dorsal and ventral spinocerebellar tracts (DSCT and VSCT respectively) during rhythmic motor actions such as locomotion. Based on experiments in the 1960s and 1970s, the DSCT was viewed as a relay of peripheral sensory input to the cerebellum in general, and during rhythmic movements such as locomotion and scratch. In contrast, the VSCT was seen as conveying a copy of the output of spinal neuronal circuitry, including those circuits generating rhythmic motor activity (the spinal central pattern generator, CPG). Emerging anatomical and electrophysiological information on the putative subpopulations of DSCT and VSCT neurons suggest differentiated functions for some of the subpopulations. Multiple lines of evidence support the notion that sensory input is not the only source driving DSCT neurons and, overall, there is a greater similarity between DSCT and VSCT activity than previously acknowledged. Indeed the majority of DSCT cells can be driven by spinal CPGs for locomotion and scratch without phasic sensory input. It thus seems natural to propose the possibility that CPG input to some of these neurons may contribute to distinguishing sensory inputs that are a consequence of the active locomotion from those resulting from perturbations in the external world.
机译:这篇综述的主要目的是在有节奏的运动动作(例如运动)期间重新检查由背侧和腹侧脊髓小脑束(分别为DSCT和VSCT)传递的信息类型。基于1960年代和1970年代的实验,DSCT通常被视为小脑的周围感觉输入的中继,以及运动和刮擦等有节奏的运动期间。相反,VSCT被视为传达了脊髓神经元电路输出的副本,包括产生节律性运动活动的那些电路(脊柱中央模式发生器CPG)。有关DSCT和VSCT神经元的假定亚群的新的解剖学和电生理学信息表明某些亚群具有不同的功能。多条证据支持以下观点:感觉输入不是驱动DSCT神经元的唯一来源,总的来说,DSCT和VSCT活动之间的相似性比以前公认的更大。实际上,大多数DSCT细胞都可以由脊柱CPG驱动,以进行运动和刮擦,而无需进行阶段性的感觉输入。因此,似乎很自然地提出了以下可能性:CPG输入到这些神经元中的一些神经元可能有助于区分由于主动运动而产生的感觉输入与由外界干扰引起的感觉输入。

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