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Gait Training With Virtual Reality-Based Real-Time Feedback: Improving Gait Performance Following Transfemoral Amputation

机译:基于虚拟现实的实时反馈进行步态训练:经股截肢后提高步态表现

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摘要

Gait training is an important component of rehabilitation after lower-extremity amputation. Abnormal gait performance often persists even for individuals who reacquire a high level of function. This case report describes the use of a virtual reality (VR)-based gait training program that provides real-time feedback in order to improve biomechanical and physiological performance. The aim of this case report is to describe the effects of the training in a person with a transfemoral amputation. A 24-year-old man with a transfemoral amputation completed a 3-week gait training program. The intervention consisted of 12 sessions of treadmill walking with real-time visual feedback on full-body gait kinematics. A treating therapist directed the patient's attention to specific gait deviations as a means to normalize gait biomechanics. The patient completed overground biomechanical gait analyses and multiple-speed treadmill tests 3 weeks apart prior to and following the training program. Biomechanical gait analyses indicated the training produced improved frontal-plane hip, pelvis, and trunk motion during overground walking. Improvement in trunk motion was observed at the posttraining test, and improvements in pelvis and hip motion were observed at the 3-week follow-up test. Decreases of up to 23% in oxygen consumption also were demonstrated. Although the exact contribution of the visual feedback could not be isolated, the training was effective in improving the patient's walking performance. Biomechanical data suggest correcting trunk motion and increasing hip abductor strength (force-generating capacity) may be important in facilitating improvements at the pelvis and hip. Observed improvements in oxygen consumption were significantly larger than achieved through previously reported interventions.
机译:步态训练是下肢截肢术后康复的重​​要组成部分。即使对于那些需要高水平功能的人,步态表现也常常持续存在。该案例报告介绍了基于虚拟现实(VR)的步态训练程序的使用,该程序可提供实时反馈,以改善生物力学和生理性能。本病例报告的目的是描述在经股截肢患者中进行培训的效果。一名24岁男子经股骨截肢术完成了为期3周的步态训练计划。干预包括跑步机行走的12个阶段以及有关全身步态运动学的实时视觉反馈。治疗师将患者的注意力转移到特定的步态偏差上,以使步态生物力学正常化。患者在训练计划前后分别进行了3周的地面生物力学步态分析和多速跑步机测试。生物力学步态分析表明,在地面行走过程中,训练可使额骨髋,骨盆和躯干运动得到改善。在训练后的测试中观察到躯干运动得到改善,在3周的随访测试中观察到了骨盆和髋关节运动得到改善。还证明了氧气消耗量最多降低了23%。尽管无法完全确定视觉反馈的作用,但该培训有效地改善了患者的步行性能。生物力学数据表明,纠正躯干运动和增加髋关节外展肌力量(产生力量的能力)可能对促进骨盆和髋关节的改善很重要。观察到的耗氧量改善幅度远大于以前报道的干预措施。

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  • 来源
    《Physical Therapy》 |2011年第9期|p.1385-1394|共10页
  • 作者单位

    B.J. Darter, PT, PhD, Military Performance Laboratory, Department of Orthopaedics and Rehabilitation, Center for the Intrepid, Brooke Army Medical Center, 3851 Roger Brooke Dr, Fort Sam Houston, TX 78234 (USA). Address all correspondence to Dr Darter at: benjamin.darter@us.army.mil.J.M. Wilken, PT, PhD, Military Performance Laboratory, Department of Orthopaedics and Rehabilitation, Center for the Intrepid, Brooke Army Medical Center.;

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