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A Parametric Investigation of Swing Motion Triggered by Electrical Stimulation in Paraplegic Patients Using Response Surface Method

机译:使用响应面法对截瘫患者电刺激触发的摆动运动进行参数研究

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We identified torque response of flexion reflex associated with hip angle and angular velocity in 6 subjects with chronic SCI and developed two dimensional dynamic model with three segments, thigh, shank and foot. Influences of stimulation parameters such as amplitude, frequency and duration time of pulse train for producing swing motion of lower limb were investigated with response surface method to obtain optimal solutions. The initial hip flexion velocity (F-value 19.0) and knee flexion velocity (F-value 9.0) were clearly significant, while the initial hip angle was indistinguishable from the estimated amount of error. When the limb motion was simulated with initial hip and knee flexion velocity, the stimulation amplitude was increased 53%, the frequency was decreased 37% and the duration time was decreased 33% with respect to no initial condition
机译:我们确定了6名慢性SCI患者的屈曲反射与髋部角度和角速度相关的扭矩响应,并开发了具有三个部分(大腿,小腿和足)的二维动态模型。采用响应面法研究了脉冲序列的幅度,频率和持续时间等刺激参数对下肢摆动运动的影响,以求得最优解。初始髋关节屈曲速度(F值> 19.0)和膝关节屈曲速度(F值> 9.0)明显显着,而初始髋关节角度与估计的误差量没有区别。在没有初始状态的情况下,以最初的髋部和膝盖屈曲速度模拟肢体运动时,刺激幅度增加了53%,频率降低了37%,持续时间减少了33%

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