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首页> 外文期刊>Neurorehabilitation and neural repair >Arm-trunk coordination for beyond-the-reach movements in adults with stroke
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Arm-trunk coordination for beyond-the-reach movements in adults with stroke

机译:臂架协调器,用于成年人中风的超越动作

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摘要

Background. By involving additional degrees of freedom, the nervous system may preserve hand trajectories when making pointing movements with or without trunk displacement. Previous studies indicate that the potential contribution of trunk movement to hand displacement for movements made within arm reach is neutralized by appropriate compensatory shoulder and elbow rotations. For beyond-the-reach movements, compensatory coordination is attenuated after the hand peak velocity, allowing trunk movement to contribute to hand displacement. Objective. To investigate if the timing and spatial coordination of arm and trunk movements during beyond-the-reach movements is preserved in stroke. Methods. Eleven healthy control subjects and 11 individuals with mild-to-moderate chronic unilateral hemiparesis participated. Arm and trunk kinematics during 60 target reaches to an ipsilaterally placed target were recorded. In 30% of randomly chosen trials, trunk movement was unexpectedly prevented (blocked-trunk trials) by an electromagnetic device, resulting in divergence of the hand trajectory from that in free-trunk trials. Hand trajectories and elbow-shoulder interjoint coordination were compared between trials. Results. In stroke participants, hand trajectory divergence occurred at a shorter movement extent and interjoint coordination patterns diverged at a relatively greater distance compared to controls. Thus, arm movements in stroke participants only partially compensated trunk displacement resulting in the trunk movement contributing to arm movement earlier and to a larger extent during reaching. Conclusion. Individuals with mild-to-moderate stroke have deficits in timing and spatial coordination of arm and trunk movements during different parts of a reaching movement. This deficit may be targeted in therapy to improve upper limb function.
机译:背景。通过涉及额外的自由度,在进行有或没有躯干移位的指向动作时,神经系统可以保留手部轨迹。先前的研究表明,适当的补偿性肩部和肘部旋转可以抵消躯干运动对手臂伸直时手部位移的潜在影响。对于超出范围的运动,在手达到峰值速度后,补偿性协调会减弱,从而使躯干运动有助于手的位移。目的。研究在伸手不及动作中手臂和躯干运动的时间和空间协调是否保留。方法。 11名健康对照受试者和11名轻度至中度慢性单侧偏瘫患者参加了研究。记录60个目标到达同侧目标时的手臂和躯干运动学。在30%的随机选择的试验中,意外地通过电磁装置阻止了躯干运动(阻塞性躯干试验),从而导致手部轨迹与自由躯干试验中的手部轨迹有所不同。试验之间比较了手的轨迹和肘-肩关节的协调性。结果。在中风参与者中,与控件相比,手部轨迹的发散发生在较短的运动范围内,而关节间的协调模式发散的距离相对较大。因此,中风参与者的手臂运动仅部分补偿了躯干位移,从而导致躯干运动更早地以及在伸手过程中更大程度地有助于手臂运动。结论。中度至中度卒中的个体在伸手运动的不同部分中,手臂和躯干运动的时间和空间协调性不足。该缺陷可能是改善上肢功能的治疗目标。

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