Department of Mechanical Engineering, Columbia University, New York, NY, USA.
Department of Neurology, College of Physicians and Surgeons, Columbia University, New York, NY, USA.
Sci Rep. 2017 Dec 19;7(1):17875. doi: 10.1038/s41598-017-18075-6.
Gait and balance disorders are major problems that contribute to falls among subjects with Parkinson's disease (PD). Strengthening the compensatory responses through the use of balance perturbations may improve balance in PD. To date, it is unclear how PD affects the ability to react and adapt to perturbations delivered while walking. This study aims to investigate how PD affects the ability to walk, respond to balance perturbations, and produce acute short-term effects to improve compensatory reactions and gait stability. A cable-driven robot was used to train nine patients with PD and nine age-matched controls with multidirectional waist-pull perturbations while walking on a treadmill. Margin of stability and base of support were evaluated while walking without cables and reacting to the perturbations. PD was associated with a reduced stability in the forward direction and the inability to produce proactive anticipatory adjustments. Both groups were able to improve the response to the disturbances and produce short-term aftereffects of increased gait stability once the cables were removed. A single session of perturbation-based balance training produced acute effects that ameliorated gait instability in PD. This result is encouraging for designing new therapeutic interventions that remediate falls risk.
步态和平衡障碍是导致帕金森病(PD)患者跌倒的主要问题。通过使用平衡扰动来增强代偿反应可能会改善 PD 患者的平衡能力。迄今为止,尚不清楚 PD 如何影响对行走时施加的扰动的反应和适应能力。本研究旨在探讨 PD 如何影响行走能力、对平衡扰动的反应能力以及产生急性短期效应以改善代偿反应和步态稳定性。使用电缆驱动机器人在跑步机上对 9 名 PD 患者和 9 名年龄匹配的对照者进行多方向腰部拉绳扰动训练。在没有电缆的情况下行走和对扰动做出反应时,评估了稳定极限和支撑基础。PD 与前向稳定性降低以及无法产生主动预测性调整有关。两组患者在移除电缆后均能够改善对干扰的反应,并产生短期的步态稳定性增加的后效。基于扰动的平衡训练单次疗程即可产生急性效应,改善 PD 患者的步态不稳定。这一结果令人鼓舞,为设计可降低跌倒风险的新治疗干预措施提供了依据。