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Spinal Control of Motor Outputs: Parallel processing of internal and external feedback in the spinocerebellar system of primates

机译:电机输出的脊柱控制:灵长类动物的小脑脊柱系统中内部和外部反馈的并行处理

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摘要

Cerebellar control of voluntary movements is achieved by the integration of external and internal feedback information to adjust and correct properly ongoing actions. In the forelimb of primates, rostral-spinocerebellar tract (RSCT) neurons are thought to integrate segmental, descending, and afferent sources and relay upstream a compound signal that contains both an efference copy of the spinal-level motor command and the state of the periphery. We tested this hypothesis by implanting stimulating electrodes in the superior cerebellar peduncle and recording the activity of cervical spinal neurons in primates. To dissociate motor commands and proprioceptive signals, we used a voluntary wrist task and applied external perturbations to the movement. We identified a large group of antidromically activated RSCT neurons located in deep dorsal sites and a smaller fraction of postsynaptically activated (PSA) cells located in intermediate and ventral laminae. RSCT cells received sensory input from broad, proximally biased receptive fields (RFs) and were not affected by applied wrist perturbations. PSA cells received sensory information from distal RFs and were more strongly related to active and passive movements. The anatomical and functional properties of RSCT and PSA cells suggest that descending signals converging on PSA cells contribute to both motor preparation and motor control. In parallel, RSCT neurons relay upstream an integrated signal that encodes the state of working muscles and can contribute to distal-to-proximal coordination of action. Thus the rostral spinocerebellar system sends upstream an efference copy of the motor command but does not signal abrupt errors in the performed movement.>NEW & NOTEWORTHY Cerebellar coordination of voluntary movements relies on integrating feedback information to update motor output. With the use of a novel protocol, we identified spinal neurons constituting the ascending and descending components of the forelimb spinocerebellar system in behaving primates. The data suggest that descending information contributes to both motor preparation and execution, whereas ascending information conveys the spinal level motor command, such that internal and external feedback is relayed through parallel pathways.
机译:小脑对自愿运动的控制是通过整合内部和外部反馈信息来调整和纠正正在进行的正确动作而实现的。在灵长类动物的前肢中,鼻-脊髓小脑束(RSCT)神经元被认为整合了节段性,降级性和传入性源,并向上游传递复合信号,该复合信号既包含脊髓水平运动命令的有效复制,也包含周围状态。我们通过将刺激性电极植入上小脑梗并记录灵长类动物颈脊髓神经元的活性来检验该假设。为了分离运动命令和本体感受信号,我们使用了自愿手腕任务,并对运动施加了外部干扰。我们确定了位于深背位的一大批抗染色体活化的RSCT神经元,以及位于中间和腹膜的较小部分的突触后活化(PSA)细胞。 RSCT细胞从宽广的,近端偏向的感受野(RF)接收感觉输入,并且不受手腕干扰的影响。 PSA细胞从远端RF接收到感觉信息,并且与主动和被动运动密切相关。 RSCT和PSA细胞的解剖学和功能特性表明,在PSA细胞上会聚的下降信号有助于运动准备和运动控制。同时,RSCT神经元向上游传递一个整合信号,该信号对工作肌肉的状态进行编码,并且可以促进远端到近端的动作协调。因此,上颌脊髓小脑系统向上游发送运动命令的有效副本,但不会发出已执行运动中的突然错误。> NEW&NOTEWORTHY 小脑自主运动的协调依赖于集成反馈信息来更新运动输出。通过使用一种新颖的协议,我们确定了在行为灵长类动物中构成前肢脊髓小脑系统上升和下降成分的脊神经元。数据表明,下降的信息有助于运动准备和执行,而上升的信息则传达脊柱水平运动的命令,从而通过并行途径中继内部和外部反馈。

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