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Upper Limb Portable Motion Analysis System Based on Inertial Technology for Neurorehabilitation Purposes

机译:基于惯性技术的上肢便携式运动分析系统

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摘要

Here an inertial sensor-based monitoring system for measuring and analyzing upper limb movements is presented. The final goal is the integration of this motion-tracking device within a portable rehabilitation system for brain injury patients. A set of four inertial sensors mounted on a special garment worn by the patient provides the quaternions representing the patient upper limb’s orientation in space. A kinematic model is built to estimate 3D upper limb motion for accurate therapeutic evaluation. The human upper limb is represented as a kinematic chain of rigid bodies with three joints and six degrees of freedom. Validation of the system has been performed by co-registration of movements with a commercial optoelectronic tracking system. Successful results are shown that exhibit a high correlation among signals provided by both devices and obtained at the Institut Guttmann Neurorehabilitation Hospital.
机译:这里介绍了一种用于测量和分析上肢运动的基于惯性传感器的监视系统。最终目标是将这种运动跟踪设备集成到针对脑损伤患者的便携式康复系统中。一组四个惯性传感器安装在患者穿着的特殊服装上,提供代表患者上肢在空间中方向的四元数。建立运动学模型以估计3D上肢运动,以进行准确的治疗评估。人的上肢表示为具有三个关节和六个自由度的刚体运动链。该系统的验证是通过与商业光电跟踪系统共同注册运动来进行的。成功的结果表明,这两种设备提供的信号之间都具有高度相关性,并且在Guttmann神经康复医院获得。

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