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Modeling and Identification of Mechanical and Reflex Properties related to Spasticity in Stroke Patients using Multiple Pendulum Tests

机译:使用多个摆锤测试对中风患者痉挛相关的机械和反射特性进行建模和识别

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References(34) We propose a method for the comprehensive identification of spastic and intrinsic properties of spastic knee joints using multiple pendulum tests. The stretch reflex system was modeled as a velocity feedback loop where the key component was the muscle spindle model generating the afferent signals with a constant threshold and gain of the lengthening velocity. For the comprehensive identification, multiple trajectories from one session of pendulum trials with different release angles were used as the reference trajectories that the model must reproduce. The identification was successful based on the results that the identified model represented the various features of pendulum trajectories and the simulated spastic torque closely matched the experimental EMG. The identified velocity threshold showed a remarkable correlation with the EMG duration and peak. The session-based method was effective in the identification of the spastic musculoskeletal system and the velocity threshold of the stretch reflex was suggested as a reliable and intuitive indicator of spastic severity.
机译:参考文献(34)我们提出了一种使用多重摆测试来综合识别痉挛性膝关节痉挛和内在属性的方法。拉伸反射系统被建模为速度反馈回路,其中关键组件是肌肉纺锤体模型,该模型产生恒定阈值和延长速度增益的传入信号。为了进行全面识别,将来自一次摆锤试验的具有不同释放角度的多个轨迹用作模型必须复制的参考轨迹。基于以下结果,识别成功:识别出的模型代表了摆线轨迹的各种特征,并且模拟的痉挛扭矩与实验肌电图紧密匹配。识别出的速度阈值显示与EMG持续时间和峰值显着相关。基于会话的方法可以有效地识别痉挛性肌肉骨骼系统,并建议将拉伸反射的速度阈值作为痉挛严重程度的可靠且直观的指标。

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