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符号线索增强了人类手臂肌肉在运动规划阶段而非视觉空间处理阶段的快速运动反应。

Symbolic cues enhance express visuomotor responses in human arm muscles at the motor planning rather than the visuospatial processing stage.

机构信息

Centre for Sensorimotor Performance, School of Human Movement and Nutrition Sciences, The University of Queensland, Brisbane, Australia.

Department of Biomedical Engineering, University of Southern California, Los Angeles, California.

出版信息

J Neurophysiol. 2022 Sep 1;128(3):494-510. doi: 10.1152/jn.00136.2022. Epub 2022 Jul 20.

Abstract

Humans can produce "express" (∼100 ms) arm muscle responses that are inflexibly locked in time and space to visual target presentations, consistent with subcortical visuomotor transformations via the tecto-reticulo-spinal pathway. These express visuomotor responses are sensitive to explicit cue-driven expectations, but it is unclear at what stage of sensory-to-motor transformation such modulation occurs. Here, we recorded electromyographic activity from shoulder muscles as participants reached toward one of four virtual targets whose physical location was partially predictable from a symbolic cue. In an experiment in which targets could be veridically reached, express responses were inclusive of the biomechanical requirements for reaching the cued locations and not systematically modulated by cue validity. In a second experiment, movements were restricted to the horizontal plane so that the participants could perform only rightward or leftward reaches, irrespective of target position on the vertical axis. Express muscle responses were almost identical for targets that were validly cued in the horizontal direction, regardless of cue validity in the vertical dimension. Together, these findings suggest that the cue-induced enhancements of express responses are dominated by effects at the level of motor plans and not solely via facilitation of early visuospatial target processing. Notably, direct corticotectal and corticoreticular projections exist that are well-placed to modulate prestimulus motor preparation state in subcortical circuits. Our results could reflect a neural mechanism by which contextually relevant motor responses to compatible visual inputs are rapidly released via subcortical circuits that are sufficiently along the sensory-to-motor continuum. Express arm muscle responses to suddenly appearing visual targets for reaching rapid have been attributed to the tecto-reticulo-spinal pathway in humans. We demonstrate that symbolic cues before target presentation can modulate such express arm muscle responses compatibly with the biomechanics of the cued reaching direction and the cue validity. This implies cortically mediated modulation of one or more sensorimotor transformation nodes of the subcortical express pathway.

摘要

人类可以产生“表达”(∼100ms)手臂肌肉反应,这些反应在时间和空间上与视觉目标呈现紧密锁定,与经由顶盖-网状-脊髓通路的皮质下视动转换一致。这些表达性视动反应对明确的线索驱动预期敏感,但在感觉运动转换的哪个阶段发生这种调制尚不清楚。在这里,我们记录了参与者在向四个虚拟目标中的一个伸出手臂时的肩部肌肉的肌电图活动,这些目标的实际位置可以从符号线索部分预测到。在一个可以真实到达目标的实验中,表达反应包括到达提示位置的生物力学要求,并且不会被线索有效性系统地调节。在第二个实验中,运动被限制在水平面上,使得参与者只能进行向右或向左的伸展,而与垂直轴上的目标位置无关。对于在水平方向上有效提示的目标,表达肌肉反应几乎相同,而与垂直方向上的线索有效性无关。总之,这些发现表明,线索诱导的表达反应增强主要受运动计划水平的影响,而不仅仅是通过促进早期视空间目标处理。值得注意的是,存在直接的皮质顶盖和皮质网状投射,它们可以很好地调节皮质下回路中的运动准备状态。我们的结果可能反映了一种神经机制,通过该机制,与视觉输入兼容的上下文相关运动反应可以通过足够沿着感觉运动连续体的皮质下回路迅速释放。人类的快速到达视觉目标的突然出现的手臂肌肉表达反应归因于顶盖-网状-脊髓通路。我们证明,在目标呈现之前的符号线索可以以与提示伸展方向的生物力学和线索有效性兼容的方式调节这种表达性手臂肌肉反应。这意味着皮质介导的对皮质下表达通路的一个或多个感觉运动转换节点的调制。

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