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A Perturbation-based Gait Training with Multidirectional Waist-Pulls Generalizes to Split-Belt Treadmill Slips

机译:基于扰动的多方向腰拉步态训练可推广至皮带式跑步机打滑

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Gait disorders and subsequent falls are major causes of chronic disability. Most falls occur during walking when an individual fails to recover from a loss of balance. We have developed an innovative cable-driven robot that delivers unpredictable waist-pull perturbations while walking on a treadmill. In previous experiments, we showed that a training session with repeated waist-pulls induces acute motor adaptations in gait and balance recovery reactions. To date, it is unknown if the effects can be transferred to different types of external balance perturbations. This study aims to investigate if the exposure to repeated waist-pulls can improve the recovery reactions to slips. Fourteen healthy young adults were assigned to either an Experimental (EG) or a Control Group (CG). The EG was trained with multidirectional waist-pull perturbations of various intensities. The CG walked for a comparable amount of time on the treadmill with cables on, but without experiencing any waist-pull. Before and after the training, all participants were exposed to three slip-like perturbations by suddenly accelerating one belt of the treadmill in the forward direction. The Margin of Stability (MoS) was evaluated while reacting to the perturbations. At post-training, the EG showed increased stability in reaction to the waist-pull and slip-like perturbations. In contrast, the reaction to slip-like disturbances of the CG remained unchanged. A single session of gait training comprised of repeated waist-pulls showed immediate transfer to split-belt treadmill slips. The findings of this pilot study are encouraging for developing new fall prevention therapies.
机译:步态障碍和随后的跌倒是造成慢性残疾的主要原因。当个人无法从失去平衡中恢复过来时,大多数跌倒都发生在步行过程中。我们开发了一种创新的电缆驱动机器人,该机器人在跑步机上行走时会产生无法预测的腰部拉动扰动。在以前的实验中,我们显示了反复腰部牵引的训练会在步态和平衡恢复反应中引起急性运动适应。迄今为止,还不清楚是否可以将效果转移到不同类型的外部平衡扰动中。这项研究旨在调查暴露于反复的腰部拉扯是否可以改善滑倒的恢复反应。将十四名健康的年轻人分为实验组(EG)或对照组(CG)。 EG训练有各种强度的多方向腰部拉动扰动。 CG在带电缆的跑步机上走了相当长的时间,但没有出现腰部拉伤的情况。在训练之前和之后,所有参与者都突然向前进方向加速了跑步机的一条皮带,从而遭受了三种打滑状的扰动。在对扰动做出反应的同时评估了稳定裕度(MoS)。在训练后,EG在对腰部拉动和滑倒样扰动的反应中显示出增加的稳定性。相反,对CG的滑动样干扰的反应保持不变。单次步态训练由反复的腰部拉扯组成,显示立即转移到皮带式跑步机滑道上。这项初步研究的结果对于开发新的预防跌倒疗法是令人鼓舞的。

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