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Effects of Muscle Vibration on Multi-finger Interaction and Coordination

机译:肌肉振动对多指交互和协调的影响

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摘要

The purpose of this study was to investigate the effects of changes in the proprioceptive signals induced by muscle vibration on multi-finger interaction and coordination. We hypothesized that unintended force production by non-instructed fingers (enslaving) would increase with muscle vibration while synergy indices during steady-state force production would drop. The framework of the uncontrolled manifold hypothesis was used to quantify indices of multi-finger synergies stabilizing total force during steady-state force production and anticipatory changes in these indices (anticipatory synergy adjustments, ASAs) in preparation to a quick force pulse production with and without hand muscle vibration at 80 Hz. The dominant hands of twelve healthy right-handed subjects were tested under three conditions: no vibration, vibration of the palmar surface of the hand, and vibration of the forearm applied over the flexor muscles. There were no significant effects of vibration on maximal voluntary force. The magnitude of enslaving was larger during vibration of the hand compared to the other two conditions. During steady-state force production, strong synergies stabilizing total force were seen in all three conditions; however, indices of force-stabilizing synergies were lower during vibration of the hand. Prior to the force pulse initiation, the synergy index started to drop earlier and over a larger magnitude without vibration compared to either vibration condition. Effects of vibration on enslaving and synergy index may be due to diffuse reflex effects of the induced afferent activity on alpha-motoneuronal pools innervating the extrinsic flexor compartments. We conclude that multi-finger synergies are not based on signals from muscle receptors. The smaller synergy indices and ASAs may reflect supraspinal effects of the vibration-induced afferent activity, in particular its interactions with trans-thalamic loops.
机译:这项研究的目的是调查由肌肉振动引起的本体感受信号的变化对多指相互作用和协调的影响。我们假设,未经指示的手指(奴役)产生的意外力量会随着肌肉的振动而增加,而稳态力量产生期间的协同指数会下降。不受控制的流形假设的框架用于量化稳定稳态力产生过程中稳定总力的多指协同作用的指标,以及这些指标的预期变化(预期协同作用调整,ASA),以准备在有或无作用下快速产生力脉冲80 Hz时手部肌肉的振动。在以下三个条件下测试了十二名健康的右手受试者的优势手:无振动,手掌表面振动以及施加在屈肌上的前臂振动。振动对最大自发力没有明显影响。与其他两种情况相比,手部振动期间的奴役程度更大。在稳态兵力生产期间,在所有三种情况下都可以看到稳定总力的强大协同作用。然而,在手的振动过程中,力稳定协同作用的指数较低。与任一振动条件相比,在施加力脉冲之前,协同指数开始更早下降,并且在没有振动的情况下下降幅度更大。振动对奴隶制和协同指数的影响可能是由于诱导传入活动对支配外在屈肌隔室的α-运动神经元池的漫反射效应所致。我们得出结论,多指协同作用不是基于肌肉受体的信号。较小的协同指数和ASA可能反映了振动诱发的传入活动的脊柱上端效应,特别是其与跨丘脑环的相互作用。

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