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首页> 外文期刊>Clinical biomechanics >Changes in ground reaction force during jump landing in subjects with functional instability of the ankle joint.
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Changes in ground reaction force during jump landing in subjects with functional instability of the ankle joint.

机译:具有踝关节功能不稳定的受试者在跳跃着陆过程中地面反作用力的变化。

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摘要

Objective. To identify changes in ground reaction force during jump landing in subjects with functional instability of the ankle joint. Design. Comparison of ground reaction force during jump landing between subjects with functional instability and healthy controls. Background. We have recently demonstrated significantly altered patterns of ankle and knee movement immediately pre- and post-impact in subjects with functional instability compared to healthy controls. We now examine the changes in timing and magnitude of forces sustained by the unstable ankle during jump landing. Methods. Fourteen subjects with unstable ankles and 10 age, sex and activity matched controls performed five single leg jumps onto a force platform whilst ground reaction forces were sampled. Timing and magnitudes of forces during the first 150 ms following impact were analysed and compared between groups. Results. Lateral and anterior force peaks occurred significantly earlier in subjects with functional instability. Significantdifferences were seen between groups' time-averaged vertical, frontal and sagittal components of ground reaction force. These ranged from 5% (frontal force) to 100% (vertical force) of body mass. These changes occur immediately post-impact and too early for reflex correction/modification. Conclusions. The disordered force patterns observed in subjects with functional instability are likely to result in repeated injury due to significant increase in stress on ankle joint structures during jump landing. We suggest that they are most likely to result from deficits in feed-forward motor control.Relevance These results identify the potentially injurious nature of the changes in the forces applied to the unstable ankle joint during jump landing. The timing of these changes suggests that they are caused by a motor control deficit. Treatment approaches aimed at retraining feed-forward control of ankle joint movement could succeed in restoring more normal patterns of force absorption and reduce the occurrence of repeated micro-trauma to ankle structures.
机译:目的。识别脚踝关节功能不稳的受试者在跳跃着陆过程中地面反作用力的变化。设计。具有功能不稳定的受试者与健康对照组之间的跳跃着陆期间地面反作用力的比较。背景。我们最近证明,与健康对照组相比,功能不稳定的受试者在受到冲击之前和之后,踝关节和膝盖运动的方式发生了显着变化。现在我们检查跳跃着陆过程中不稳定脚踝承受的力量的时间和大小的变化。方法。十四名脚踝不稳定且年龄,性别和活动与活动匹配的对照组的受试者在进行地面反作用力采样的同时,进行了五次单腿跳跃到受力平台上的动作。在撞击后的前150毫秒内分析了力的时间和大小,并在组之间进行了比较。结果。在功能不稳定的受试者中,侧向力和前向力峰值显着出现得较早。各组的地面反作用力的时间平均垂直分量,正面分量和矢状分量之间存在显着差异。这些范围从体重的5%(正面力)到100%(垂直力)。这些改变会在撞击后立即发生,并且对于反射矫正/修改而言为时过早。结论在功能不稳定的受试者中观察到的无序的力模式可能会由于重复着陆期间踝关节结构上的应力显着增加而导致反复受伤。我们建议,它们最有可能是由于前馈运动控制不足造成的。相关性这些结果表明,在跳跃着陆过程中,施加于不稳定踝关节的力的变化具有潜在的伤害性。这些变化的时间表明它们是由运动控制缺陷引起的。旨在重新培训踝关节运动的前馈控制的治疗方法可以成功恢复更正常的力吸收模式,并减少踝关节结构反复出现微创伤的发生。

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