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意外行走扰动:一种用于诱发下肢和躯干肌肉反射活动的新跑步机方案的可靠性和有效性。

Unexpected walking perturbations: Reliability and validity of a new treadmill protocol to provoke muscular reflex activities at lower extremities and the trunk.

作者信息

Engel Tilman, Mueller Juliane, Kopinski Stephan, Reschke Antje, Mueller Steffen, Mayer Frank

机构信息

University Outpatient Clinic Potsdam, Sports Medicine & Sports Orthopaedics, University of Potsdam, Am Neuen Palais 10, Haus 12, D-14469 Potsdam, Germany.

University Outpatient Clinic Potsdam, Sports Medicine & Sports Orthopaedics, University of Potsdam, Am Neuen Palais 10, Haus 12, D-14469 Potsdam, Germany.

出版信息

J Biomech. 2017 Apr 11;55:152-155. doi: 10.1016/j.jbiomech.2017.02.026. Epub 2017 Mar 4.

Abstract

Instrumented treadmills offer the potential to generate standardized walking perturbations, which are particularly rapid and powerful. However, technical requirements to release adequate perturbations regarding timing, duration and amplitude are demanding. This study investigated the test-retest reliability and validity of a new treadmill perturbation protocol releasing rapid and unexpected belt perturbations to provoke muscular reflex responses at lower extremities and the trunk. Fourteen healthy participants underwent two identical treadmill walking protocols, consisting of 10 superimposed one-sided belt perturbations (100ms duration; 2m/s amplitude), triggered by a plantar pressure insole 200ms after heel contact. Delay, duration and amplitude of applied perturbations were recorded by 3D-motion capture. Muscular reflex responses (within 200ms) were measured at lower extremities and the trunk (10-lead EMG). Data was analyzed descriptively (mean±SD). Reliability was analyzed using test-retest variability (TRV%) and limits of agreement (LoA, bias±1.96SD). Perturbation delay was 202±14ms, duration was 102±4ms and amplitude was 2.1±0.01m/s. TRV for perturbation delay, duration and amplitude ranged from 5.0% to 5.7%. LoA reached 3±36ms for delay, 2±13ms for duration and 0.0±0.3m/s for amplitude. EMG amplitudes following perturbations ranged between 106±97% and 909±979% of unperturbed gait and EMG latencies between 82±14ms and 106±16ms. Minor differences between preset and observed perturbation characteristics and results of test-retest analysis prove a high validity with excellent reliability of the setup. Therefore, the protocol tested can be recommended to provoke muscular reflex responses at lower extremities and the trunk in perturbed walking.

摘要

仪器化跑步机能够产生标准化的行走干扰,这些干扰特别快速且有力。然而,在释放关于时间、持续时间和幅度的适当干扰方面,技术要求很高。本研究调查了一种新的跑步机干扰方案的重测信度和效度,该方案释放快速且意外的跑带干扰,以激发下肢和躯干的肌肉反射反应。14名健康参与者进行了两种相同的跑步机行走方案,包括10次叠加的单侧跑带干扰(持续时间100毫秒;幅度2米/秒),由足跟接触后200毫秒的足底压力鞋垫触发。应用干扰的延迟、持续时间和幅度通过三维运动捕捉记录。在下肢和躯干(10导联肌电图)测量肌肉反射反应(200毫秒内)。对数据进行描述性分析(平均值±标准差)。使用重测变异性(TRV%)和一致性界限(LoA,偏差±1.96标准差)分析信度。干扰延迟为202±14毫秒,持续时间为102±4毫秒,幅度为2.1±0.01米/秒。干扰延迟、持续时间和幅度的TRV范围为5.0%至5.7%。LoA在延迟方面达到3±36毫秒,在持续时间方面达到2±13毫秒,在幅度方面达到0.0±0.3米/秒。干扰后的肌电图幅度在未受干扰步态的106±97%至909±979%之间,肌电图潜伏期在82±14毫秒至106±16毫秒之间。预设和观察到的干扰特征之间的微小差异以及重测分析结果证明了该设置具有高有效性和出色的信度。因此,所测试的方案可被推荐用于在受干扰行走中激发下肢和躯干的肌肉反射反应。

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