School of Exercise Science, Australian Catholic University, Melbourne, Australia.
Gait Posture. 2013 Sep;38(4):1064-6. doi: 10.1016/j.gaitpost.2013.03.029. Epub 2013 May 3.
Gait retraining programs are prescribed to assist in the rehabilitation process of many clinical conditions. Using lateral trunk lean modification as the model, the aim of this study was to assess the concurrent validity of kinematic data recorded using a marker-based 3D motion analysis (3DMA) system and a low-cost alternative, the Microsoft Kinect™ (Kinect), during a gait retraining session. Twenty healthy adults were trained to modify their gait to obtain a lateral trunk lean angle of 10°. Real-time biofeedback of the lateral trunk lean angle was provided on a computer screen in front of the subject using data extracted from the Kinect skeletal tracking algorithm. Marker coordinate data were concurrently recorded using the 3DMA system, and the similarity and equivalency of the trunk lean angle data from each system were compared. The lateral trunk lean angle data obtained from the Kinect system without any form of calibration resulted in errors of a high (>2°) magnitude (mean error=3.2±2.2°). Performing global and individualized calibration significantly (P<0.001) improved this error to 1.7±1.5° and 0.8±0.8° respectively. With the addition of a simple calibration the anatomical position coordinates of the Kinect can be used to create a real-time biofeedback system for gait retraining. Given that this system is low-cost, portable and does not require any sensors to be attached to the body, it could provide numerous advantages when compared to laboratory-based gait retraining systems.
步态再训练方案被用于协助许多临床病症的康复过程。本研究采用躯干侧倾角度改变作为模式,旨在评估使用基于标记的 3D 运动分析(3DMA)系统和低成本的替代方案——微软 Kinect™(Kinect)在步态再训练过程中,记录的运动学数据的同时效度。20 名健康成年人接受训练,以改变其步态,使躯干侧倾角度达到 10°。通过从 Kinect 骨骼跟踪算法中提取的数据,在受试者面前的计算机屏幕上实时提供躯干侧倾角度的生物反馈。使用 3DMA 系统同时记录标记坐标数据,并比较每个系统的躯干倾斜角度数据的相似性和等效性。未经任何形式校准的 Kinect 系统获得的躯干倾斜角度数据存在较大误差(>2°)(平均误差=3.2±2.2°)。进行全局和个体化校准显著(P<0.001)将误差分别改善至 1.7±1.5°和 0.8±0.8°。通过添加简单的校准,可以使用 Kinect 的解剖位置坐标来创建用于步态再训练的实时生物反馈系统。鉴于该系统成本低、便携且无需将传感器附着在身体上,与基于实验室的步态再训练系统相比,它具有许多优势。