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足部位置和座椅高度对偏瘫患者坐立和站立任务中垂直力不对称性的影响。

The effect of foot position and chair height on the asymmetry of vertical forces during sit-to-stand and stand-to-sit tasks in individuals with hemiparesis.

作者信息

Roy Guylaine, Nadeau Sylvie, Gravel Denis, Malouin Francine, McFadyen Bradford J, Piotte France

机构信息

Centre de recherche interdisciplinaire en réadaptation (CRIR), Institut de réadaptation de Montréal, Canada.

出版信息

Clin Biomech (Bristol). 2006 Jul;21(6):585-93. doi: 10.1016/j.clinbiomech.2006.01.007. Epub 2006 Mar 15.

Abstract

BACKGROUND

The asymmetrical motor pattern of persons with hemiparesis influences the performance of activities that require interactions between the two sides of the body.

METHODS

Twelve subjects with a chronic hemiparesis were asked to stand up and sit down at their natural speed in the following foot positions: (1) spontaneous; (2) symmetrical; (3) asymmetrical with the affected foot placed backward; and (4) asymmetrical with the unaffected foot placed backward. Forces were recorded under each foot using two force plates and under each thigh with an instrumented chair. Each foot position was tested at two chair heights corresponding to 100% and 120% of leg length. For each condition, the duration and the asymmetry of loading expressed by the vertical forces were calculated for four different events: onset, transition (forces under feet and thighs), seat-off or seat-on and at the end of the task.

FINDINGS

The time to execute the tasks ranged from 2.31 s to 3.69 s with higher values observed for the stand-to-sit task than for the sit-to-stand task. Overall, the asymmetry of vertical forces was greatest in the middle part of the tasks and was not influenced by the chair height. When the subjects were still in contact with the seat, the loading asymmetry originated from a difference between sides at both the thigh and the foot. The asymmetrical foot position with the affected foot backward promoted loading on the affected side during both tasks. Interpretation. This study shows that loading asymmetry was present before seat-off and after seat-on in sit-to-stand and stand-to-sit tasks, respectively. It shows that positioning the affected foot behind reduces the asymmetry whereas positioning the unaffected foot behind increases the asymmetry. Foot position should be taken into consideration when clinicians assess or train for these mobility tasks.

摘要

背景

偏瘫患者的不对称运动模式会影响需要身体两侧相互作用的活动表现。

方法

12名慢性偏瘫患者被要求以自然速度在以下足部位置进行站起和坐下动作:(1)自发状态;(2)对称状态;(3)患侧脚向后的不对称状态;(4)健侧脚向后的不对称状态。使用两个测力板记录每只脚下的力,并使用带传感器的椅子记录每条大腿下的力。在对应腿长100%和120%的两个椅子高度下对每个足部位置进行测试。对于每种情况,计算四个不同事件(起始、转换(脚下和大腿下的力)、离座或入座以及任务结束时)垂直力所表示的加载持续时间和不对称性。

结果

执行任务的时间范围为2.31秒至3.69秒,坐立任务的时间值高于站立坐任务。总体而言,垂直力的不对称性在任务中间部分最大,且不受椅子高度影响。当受试者仍与座椅接触时,加载不对称性源于大腿和足部两侧的差异。患侧脚向后的不对称足部位置在两项任务中均促进了患侧的加载。解读:本研究表明,在坐立和站立坐任务中,分别在离座前和入座后存在加载不对称性。研究表明,将患侧脚置于后方可减少不对称性,而将健侧脚置于后方则会增加不对称性。临床医生在评估或训练这些移动任务时应考虑足部位置。

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