Kim Yongchul, Schmit Brian D, Youm Youngil
Department of Mechanical Engineering, Pohang University of Science and Technology, Pohang 790-784, South Korea.
Clin Biomech (Bristol). 2006 Jun;21(5):485-94. doi: 10.1016/j.clinbiomech.2005.12.016. Epub 2006 Feb 20.
The aims of this study were to identify the reflex moment induced by flexion withdrawal reflex and to optimize stimulation parameters for restoring swing motion with respect to initial kinematic conditions in human with spinal cord injury.
The influence of hip position and passive movement in the reflex moment were tested in six subjects with chronic spinal cord injury. The two-dimensional dynamic models consisted of thigh, shank and foot segments were developed to compute the swing-phase response and the response surface method was also used to optimize stimulation parameters for restoration of gait by functional electrical stimulation.
At three different hip positions, significant linear relationship was found between the reflex moment and hip angle (P < 0.05) and hip movement also increased the reflex moment compare to isometric conditions. The hip and knee flexion velocities significantly contributed to the hip and knee flexion angle during the swing-phase (P < 0.05) and increase of initial joint velocity resulted in a decrease of the burst frequency and duration time for optimal swing motion in spinal cord injured patients.
From dynamic simulation, we concluded that optimal solutions of pulse amplitude, frequency and duration time of burst for electrical stimulation assisted gait were influenced by initial kinematic conditions at toe-off. The reflex model and the results of this study can be applied to the design and control strategies of neuroprosthetic devices using functional electrical stimulation for spinal cord injured patients.
本研究的目的是确定屈曲撤离反射诱发的反射力矩,并针对脊髓损伤患者的初始运动学条件优化恢复摆动运动的刺激参数。
在6名慢性脊髓损伤患者中测试了髋关节位置和被动运动对反射力矩的影响。建立了由大腿、小腿和足部节段组成的二维动力学模型,以计算摆动期反应,并采用响应面法优化功能性电刺激恢复步态的刺激参数。
在三个不同的髋关节位置,反射力矩与髋关节角度之间存在显著的线性关系(P < 0.05),与等长条件相比,髋关节运动也增加了反射力矩。在摆动期,髋关节和膝关节的屈曲速度对髋关节和膝关节的屈曲角度有显著贡献(P < 0.05),初始关节速度的增加导致脊髓损伤患者最佳摆动运动的爆发频率和持续时间减少。
通过动态模拟,我们得出结论,电刺激辅助步态的脉冲幅度、频率和爆发持续时间的最佳解决方案受离地时初始运动学条件的影响。本研究的反射模型和结果可应用于脊髓损伤患者使用功能性电刺激的神经假体装置的设计和控制策略。