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偏瘫成年人在自愿性腿部屈曲运动中伴随的站立支撑动态转换的动力学分析。

Kinetic analysis of dynamic transitions in stance support accompanying voluntary leg flexion movements in hemiparetic adults.

作者信息

Rogers M W, Hedman L D, Pai Y C

机构信息

Programs in Physical Therapy, Northwestern University Medical School, Chicago, IL 60611.

出版信息

Arch Phys Med Rehabil. 1993 Jan;74(1):19-25.

PMID:8420514
Abstract

The purpose of this study was to examine the extent to which adult hemiparesis due to cerebrovascular accident may alter the dynamic transitions from bipedal to single limb stance that accompany rapid voluntary single leg flexion movements while standing. Eight postacute hemiparetic adults performed rapid single-leg-flexion movements with the paretic (PL) and nonparetic (NL) limbs while standing on two separate force platforms that recorded the individual and resultant lateral horizontal (FY) ground reaction force (GRF) components acting on the body in the frontal plane. The results showed that for NL movements, the ipsilateral FY force-time integral contributed a significantly greater proportion to the resultant FY than that recorded beneath the upcoming stance PL, whereas PL movements showed a reverse trend indicating differences in the spatial distribution of GRFs. For some subjects, delays in the initial FY onset times between limbs and reversals in the normal direction of initial force application beneath the PL were observed. Such changes in the spatial and temporal aspects of GRF production may affect dynamic lateral weight transfer function regardless of the direction of total body motion. Implications for clinical practice pertaining to interventions that emphasize speed as well as magnitude of paretic muscle torque production, and factors related to the selection of movement activities for the retraining of dynamic weight transfer function are discussed.

摘要

本研究的目的是探讨脑血管意外所致成人偏瘫在多大程度上可能改变站立时伴随快速自主单腿屈曲运动的从双足站立到单腿站立的动态转变。八名急性后期偏瘫成人在两个独立的测力平台上站立时,分别用患侧(PL)和非患侧(NL)肢体进行快速单腿屈曲运动,这两个平台记录了作用于身体额状面的个体及合成的外侧水平(FY)地面反作用力(GRF)分量。结果显示,对于NL运动,同侧FY力-时间积分对合成FY的贡献比例显著大于即将成为支撑腿的PL下方记录到的比例,而PL运动则呈现相反趋势,表明GRF的空间分布存在差异。对于一些受试者,观察到肢体间初始FY起始时间的延迟以及PL下方初始力施加正常方向的反转。GRF产生的时空方面的此类变化可能会影响动态侧向体重转移功能,而与全身运动方向无关。本文讨论了对临床实践的启示,涉及强调患侧肌肉扭矩产生的速度和大小的干预措施,以及与选择用于动态体重转移功能再训练的运动活动相关的因素。

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