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支具穿戴诱发步态启动期单侧膝关节活动度下降后的姿势适应。

Postural adaptations to unilateral knee joint hypomobility induced by orthosis wear during gait initiation.

机构信息

CIAMS, Univ. Paris-Sud., Université Paris-Saclay, 91405, Orsay, France.

CIAMS, Université d'Orléans, 45067, Orléans, France.

出版信息

Sci Rep. 2018 Jan 16;8(1):830. doi: 10.1038/s41598-018-19151-1.

Abstract

Balance control and whole-body progression during gait initiation (GI) involve knee-joint mobility. Single knee-joint hypomobility often occurs with aging, orthopedics or neurological conditions. The goal of the present study was to investigate the capacity of the CNS to adapt GI organization to single knee-joint hypomobility induced by the wear of an orthosis. Twenty-seven healthy adults performed a GI series on a force-plate in the following conditions: without orthosis ("control"), with knee orthosis over the swing leg ("orth-swing") and with the orthosis over the contralateral stance leg ("orth-stance"). In orth-swing, amplitude of mediolateral anticipatory postural adjustments (APAs) and step width were larger, execution phase duration longer, and anteroposterior APAs smaller than in control. In orth-stance, mediolateral APAs duration was longer, step width larger, and amplitude of anteroposterior APAs smaller than in control. Consequently, step length and progression velocity (which relate to the "motor performance") were reduced whereas stability was enhanced compared to control. Vertical force impact at foot-contact did not change across conditions, despite a smaller step length in orthosis conditions compared to control. These results show that the application of a local mechanical constraint induced profound changes in the global GI organization, altering motor performance but ensuring greater stability.

摘要

平衡控制和整个身体在步态起始(GI)期间的进展涉及膝关节的灵活性。单膝关节活动度降低通常发生在衰老、骨科或神经条件下。本研究的目的是调查中枢神经系统适应单膝关节活动度降低的能力,这种降低是由佩戴矫形器引起的。27 名健康成年人在测力板上进行了一系列步态起始测试,测试条件包括:不佩戴矫形器(“对照”)、佩戴摆动腿的膝关节矫形器(“矫形摆动腿”)和佩戴对侧支撑腿的膝关节矫形器(“矫形支撑腿”)。在矫形摆动腿中,前后向姿势调整(APAs)的前馈幅度和步宽较大,执行阶段持续时间较长,前后向 APAs 较小。在矫形支撑腿中,前后向 APAs 持续时间较长,步宽较大,前后向 APAs 幅度较小。因此,与对照相比,步长和进展速度(与“运动表现”有关)降低,而稳定性增强。尽管在矫形条件下的步长比对照条件下小,但脚触时的垂直力冲击没有发生变化。这些结果表明,局部机械约束的应用导致全局 GI 组织发生深刻变化,改变了运动表现,但确保了更大的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/893b/5770397/3e05a1091256/41598_2018_19151_Fig1_HTML.jpg

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