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基于群体的猕猴皮质脊髓相互作用与视觉运动处理相关。

Population-based corticospinal interactions in macaques are correlated with visuomotor processing.

机构信息

Department of Physiology, Hadassah Medical School, The Hebrew University of Jerusalem, Jerusalem 91120, Israel.

出版信息

Cereb Cortex. 2010 Jan;20(1):241-52. doi: 10.1093/cercor/bhp095.

Abstract

Visuomotor transformation is a fundamental process in executing voluntary actions. The final steps of this transformation are presumed to take place in the corticospinal (CS) system, yet the way in which the motor cortex (MC) interacts with spinal circuitry during this process is unclear. We studied neural correlates of visuomotor transformation in the MC and cervical spinal cord while monkeys performed an isometric wrist task. We recorded 2 measures of population activity: local field potential (LFP), reflecting local synaptic inputs and multi-unit activity (MUA), reflecting spiking activity emitted by nearby neurons. We found robust cortical and spinal responses locked to visual and motor events. In motor cortex, LFP responses were predominantly visually related; MUA responses were mostly motor related. Spinal LFP responses were generally weak, yet spinal MUAs showed visual and motor responses with distinctive patterns. For both structures, amplitudes of visual responses were positively correlated with amplitudes of motor responses and negatively correlated with reaction times. The temporal relations of cortical and spinal responses shifted from weak coactivation before movement to increased coupling following torque onset, with cortical leading spinal activity. Thus, ongoing CS interactions may exist at early stages of movement preparation. These interactions are dynamic and may shape the executed motor action.

摘要

视动转换是执行自主运动的基本过程。这一转换的最后步骤被认为发生在皮质脊髓(CS)系统中,但运动皮层(MC)在这一过程中与脊髓回路相互作用的方式尚不清楚。我们在猴子执行等长腕部任务时,研究了 MC 和颈脊髓中的视动转换的神经相关物。我们记录了 2 种群体活动测量值:局部场电位(LFP),反映局部突触输入;多单位活动(MUA),反映附近神经元发出的尖峰活动。我们发现了与视觉和运动事件锁相的强烈皮质和脊髓反应。在运动皮层中,LFP 反应主要与视觉有关;MUA 反应主要与运动有关。脊髓 LFP 反应通常较弱,但脊髓 MUA 显示出具有独特模式的视觉和运动反应。对于这两种结构,视觉反应的幅度与运动反应的幅度呈正相关,与反应时间呈负相关。皮质和脊髓反应的时间关系从运动前的弱共激活转变为转矩起始后的耦合增加,皮质活动领先于脊髓活动。因此,在运动准备的早期阶段可能存在持续的 CS 相互作用。这些相互作用是动态的,可能会影响执行的运动动作。

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