首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Inter-Joint Coordination Deficits Revealed in the Decomposition of Endpoint Jerk During Goal-Directed Arm Movement After Stroke
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Inter-Joint Coordination Deficits Revealed in the Decomposition of Endpoint Jerk During Goal-Directed Arm Movement After Stroke

机译:中风后目标定向手臂运动过程中端点急动分解中的关节间协调不足

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It is well documented that neurological deficits after stroke can disrupt motor control processes that affect the smoothness of reaching movements. The smoothness of hand trajectories during multi-joint reaching depends on shoulder and elbow joint angular velocities and their successive derivatives as well as on the instantaneous arm configuration and its rate of change. Right-handed survivors of unilateral hemiparetic stroke and neurologically-intact control participants held the handle of a two-joint robot and made horizontal planar reaching movements. We decomposed endpoint jerk into components related to shoulder and elbow joint angular velocity, acceleration, and jerk. We observed an abnormal decomposition pattern in the most severely impaired stroke survivors consistent with deficits of inter-joint coordination. We then used numerical simulations of reaching movements to test whether the specific pattern of inter-joint coordination deficits observed experimentally could be explained by either a general increase in motor noise related to weakness or by an impaired ability to compensate for multi-joint interaction torque. Simulation results suggest that observed deficits in movement smoothness after stroke more likely reflect an impaired ability to compensate for multi-joint interaction torques rather than the mere presence of elevated motor noise.
机译:有充分的文献记载,中风后的神经功能缺损会破坏运动控制过程,从而影响达到运动的平稳性。多关节到达过程中手部轨迹的平滑度取决于肩膀和肘关节的角速度及其连续导数,以及瞬时手臂的配置及其变化率。单侧偏中风的幸存者和神经学完好的控制参与者握住两关节机器人的手柄,并进行水平平面的伸手动作。我们将端点跳动分解为与肩膀和肘关节角速度,加速度和跳动相关的组件。我们观察到最严重受损的中风幸存者的异常分解模式与关节间协调的缺陷相一致。然后,我们使用了到达运动的数值模拟来测试实验观察到的关节间协调缺陷的特定模式是否可以通过与弱点相关的运动噪声的普遍增加或通过补偿多关节相互作用扭矩的能力受损来解释。仿真结果表明,在中风后观察到的运动平滑度不足更可能反映了补偿多关节相互作用扭矩的能力受损,而不是仅仅存在增加的马达噪音。

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