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Gait strategies to reduce the dynamic joint load in the lower limbs during a loading response in young healthy adults

机译:在年轻健康成年人加载响应期间降低下肢动态关节载荷的步态策略

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Reducing external joint moments during gait can lead to a reduction in dynamic joint load. There has yet to be a detailed investigation of gait strategies that can reduce external joint moments by decreasing the magnitude of ground reaction force (GRF) without reducing the walking speed. The objectives of this study were to verify whether it is possible to reduce external joint moments by decreasing the GRF magnitude without reducing the walking speed and to identify the alternative walking strategy involved in young healthy adults. This study included 14 young healthy subjects. They performed two types of walking: normal and impact reduction walking. For impact reduction walking, the subjects walked in a manner that reduced the impact upon foot contact. Cadence and step length were unified between the two conditions. The walking speed, peak value of vertical GRF, braking-accelerating force, loading rate, joint angle, and external joint moments of the two conditions were recorded and compared. No significant difference was noted in the walking speed. However, the first peak of vertical GRF, braking force, and loading rate during loading response were significantly reduced during impact reduction walking, and external joint moments in the hip, knee, and ankle joints were reduced. In contrast, the second peak of vertical GRF, hip extension angle, and external ankle dorsiflexion moment were significantly increased during terminal stance. Our data imply that the ankle joint function during the terminal stance is important in reducing the dynamic joint load in the contralateral leg during the loading response.
机译:在步态期间减少外部关节矩可能导致动态接头载荷的降低。尚未详细研究步态策略,可以通过降低地面反作用力(GRF)的大小而不降低步行速度来减少外部关节矩。本研究的目标是通过在不降低步行速度的情况下降低GRF幅度并识别年轻健康成年人所涉及的替代行走策略来验证是否有可能降低外部联合矩。本研究包括14个年轻健康的科目。他们表演了两种行走:正常和影响减少步行。对于影响减少行走,受试者以减少脚接触的影响的方式走动。在两个条件下统一节奏和步长。记录了步行速度,垂直GRF的峰值,制动加速力,装载速率,关节角度和两个条件的外部关节时刻。步行速度没有注意到显着差异。然而,在负载降低行走期间,在装载响应期间的垂直GRF,制动力和装载速率的第一峰值显着降低,并且减少了臀部,膝关节和踝关节的外部关节矩。相反,在终端姿态期间,垂直GRF,髋部延伸角和外脚踝背离的第二峰值显着增加。我们的数据意味着终端姿势期间的踝关节功能对于在负载响应期间减少对侧腿部的动态接头载荷很重要。

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