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Analysis of increasing and decreasing isometric finger force generation and the possible role of the corticospinal system in this process

机译:增加和减少等轴指力产生的增加和皮质脊髓系统在该过程中的可能作用

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摘要

This study investigated the possible role of the corticospinal system during force generation and force relaxation. Nine young and healthy subjects were instructed to produce a total force with four fingers within a hand following a preset force generation and relaxation ramp template closely. Excitability of corticospinal (CS) projections was assessed by single- and paired-pulse TMS. Errors introduced by a finger force were partially compensated by other finger forces during force generation, but were amplified during force relaxation. The CS excitability was greater during force generation than maintenance or relaxation. No difference in intracortical inhibition or facilitation was found. Non-normalized finger extensor EMG responses remained unchanged. The findings suggest that force relaxation is not just a withdrawal from activation, and multi-finger interactions are likely controlled beyond the primary motor cortex.
机译:这项研究调查了皮质脊髓系统在力产生和力松弛过程中的可能作用。指示9名年轻健康的受试者紧紧遵循预设的力生成和松弛坡度模板,用一只手的四个手指产生合力。通过单脉冲和成对脉冲TMS评估皮质脊髓(CS)投影的兴奋性。手指产生的误差会在产生力的过程中被其他手指产生的力量部分补偿,但在松弛时会加剧。在力产生期间,CS兴奋性大于维持或放松状态。皮层内抑制或促进没有发现差异。未归一化的手指伸肌肌电图反应保持不变。这些发现表明,力松弛不仅仅是从激活中退出,而且多指相互作用可能在初级运动皮层之外受到控制。

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