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诱导步态样下肢运动的复杂肌肉振动模式:概念验证

Complex muscle vibration patterns to induce gait-like lower-limb movements: proof of concept.

作者信息

Duclos Cyril, Kemlin Claire, Lazert David, Gagnon Dany, Dyer Joseph-Omer, Forget Robert

机构信息

Centre de Recherche Interdisciplinaire en Réadaptation (Université de Montréal), Institut de Réadaptation Gingras-Lindsay-de-Montréal, 6300 avenue Darlington, Montréal, QC, H3S 2J4, Canada.

出版信息

J Rehabil Res Dev. 2014;51(2):245-51. doi: 10.1682/JRRD.2013.04.0079.

Abstract

Muscle vibrations can induce motor responses and illusions of complex movements. However, inducing gait-like cyclical movements and illusions requires the application of multiple fast alternating vibrations to lower-limb muscles. The objectives were (1) to test the feasibility of delivering complex vibrations in a time-organized manner and (2) to illustrate the possibility of inducing alternate gait-in-place-like movements using these vibrations. Patterns of vibration, produced by 12 vibrators applied bilaterally on the flexor and extensor muscle groups of the lower limbs, were based on normal gait kinematics. We tested 1 s and 2 s cycle patterns of vibration. Vibrator responses were assessed using auto- and crosscorrelations and frequency analyses based on accelerometry measurements, and compared between patterns. High auto- (>0.8) and crosscorrelation (>0.6) coefficients demonstrated a good response by the vibrators to the control signal. Vibrations induced cyclical, low-amplitude stepping-in-place movements that mimicked alternate walking movements with both legs, with 1 s and 2 s cycle durations, in one nondisabled participant and one participant with American Spinal Injury Association Impairment Scale B spinal cord injury standing, relaxed, with body-weight support. Electromechanical vibrators can deliver complex cyclical vibrations and trigger gait-like lower-limb movements. These results warrant the application of these vibration patterns on individuals with sensorimotor impairments to test their potential in gait rehabilitation.

摘要

肌肉振动可诱发运动反应和复杂运动错觉。然而,诱发类似步态的周期性运动和错觉需要对下肢肌肉施加多次快速交替振动。目的是:(1)测试以时间组织方式传递复杂振动的可行性;(2)说明使用这些振动诱发类似原地交替步态运动的可能性。由双侧应用于下肢屈肌和伸肌组的12个振动器产生的振动模式基于正常步态运动学。我们测试了1秒和2秒的振动周期模式。基于加速度测量,使用自相关和互相关以及频率分析来评估振动器响应,并在不同模式之间进行比较。高自相关系数(>0.8)和互相关系数(>0.6)表明振动器对控制信号有良好响应。在一名无残疾参与者和一名美国脊髓损伤协会损伤量表B级脊髓损伤参与者站立、放松并接受体重支持的情况下,振动诱发了周期性、低幅度的原地踏步运动,模拟了双腿的交替行走运动,振动周期为1秒和2秒。电动振动器可以传递复杂的周期性振动并触发类似步态的下肢运动。这些结果证明了将这些振动模式应用于感觉运动障碍个体以测试其在步态康复中的潜力的合理性。

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