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近距离机器人运动跟踪是否会改变步态?

Does close proximity robot motion tracking alter gait?

机构信息

Department of Mechanical & Aerospace Engineering, University of Florida, Gainesville, FL 32611-6250, USA.

出版信息

Gait Posture. 2011 Oct;34(4):508-13. doi: 10.1016/j.gaitpost.2011.07.002. Epub 2011 Sep 8.

Abstract

Dynamic fluoroscopic imaging and three-dimensional model-image registration techniques provide detailed joint kinematic measurements for motions constrained to small volumes of space. Several groups are working to mount radiographic imaging hardware onto mobile platforms to provide these same imaging capabilities for observation of unrestricted activities. These dynamic radiographic imaging systems could provide accurate skeletal kinematics during a wide range of clinically relevant, daily activities. However, the premise that people move naturally when followed by a dynamic imaging system has not been evaluated. The goal of this study was to determine if a close-up robot tracking system affects natural free-speed gait. 14 healthy adults were recruited to walk through the workspace of a dynamic radiographic imaging system. Randomized walking trials were performed with and without the dynamic imaging system tracking the motions of the subject's left knee. With- and without-robot trials were compared using detailed temporal-spatial and frequency analysis of kinematic and kinetic parameters. On average, participants increase their stride length by 0.9 cm. There also were slight increases in unexplained variation in ankle flexion/extension and ground reaction forces compared to baseline measurements. The statistically significant differences indicate that, on average, people tried to move faster through the workspace of the dynamic radiographic imaging system while it was actively tracking their motion. These differences are small and potentially clinically irrelevant.

摘要

动态荧光透视成像和三维模型图像配准技术为受限在小体积空间内的运动提供了详细的关节运动学测量。一些研究小组正在将射线照相成像硬件安装到移动平台上,以便为不受限制的活动提供相同的成像功能。这些动态射线照相成像系统可以在广泛的临床相关日常活动中提供准确的骨骼运动学。然而,在动态成像系统跟踪下人们自然移动的前提尚未得到评估。本研究的目的是确定近距离机器人跟踪系统是否会影响自然的自由速度步态。14 名健康成年人被招募来在动态射线照相成像系统的工作空间中行走。随机行走试验分别在有和没有动态成像系统跟踪受试者左膝运动的情况下进行。使用运动学和动力学参数的详细时间-空间和频率分析比较了有-无机器人试验。平均而言,参与者的步长增加了 0.9 厘米。与基线测量相比,踝关节屈伸和地面反力的未解释变异也略有增加。统计学上的显著差异表明,平均而言,当动态射线照相成像系统主动跟踪运动时,人们试图在其工作空间中更快地移动。这些差异很小,可能在临床上无关紧要。

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