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Low Limb Muscle Activation and Joint Angle in the Sagittal Plane During Drop Landing from Various Heights

机译:从不同高度降落时矢状面的下肢肌肉激活和关节角低

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[Purpose] The purpose of study was to verify various strategies for the prevention of injury in normal adults and to identify the risk factors of body injury by the biomechanical analysis of drop landing with selected external loads that are commonly experienced in daily living causing load on the foot, ankle and the entire body as well as an increase in impulse. [Subjects] The subjects of this study were 14 normal adults. [Methods] Measurements were carried out while the participants drop-landed from the heights of 20, 40 and 60 cm. [Results] The muscle activation of the individual muscles until the posture was stabilized significantly increased in the abductor hallucis, medial gastrocnemius, biceps femoris and vastus lateralis as the drop height increased. In addition, the movement of the individual joints to correct the posture while landing showed that the flexion angles of the hip joint and knee joint increased as the drop height increased. [Conclusion] We found that there was a great change in the muscle activation at the drop height of 40 cm and the flexion angle also changed at the drop height of 40 cm, indicating that 40 cm may be the drop height at which the strategy for the postural balance of humans changes while landing.
机译:[目的]研究的目的是通过对跌落着陆的生物力学分析来验证正常成年人预防各种伤害的策略,并确定人体受伤的危险因素,这些载荷是在日常生活中通常会造成载荷的外部载荷。脚,脚踝和整个身体以及冲动的增加。 [受试者]该研究的受试者为14名正常成年人。 [方法]在参与者从20、40和60厘米的高度降落时进行测量。 [结果]随着跌落高度的增加,外展幻觉,腓肠肌内侧,股二头肌和股外侧肌的各个肌肉的肌肉激活直至姿势稳定为止。另外,着陆时各个关节的运动以纠正姿势,这表明髋关节和膝关节的屈曲角度随着下落高度的增加而增加。 [结论]我们发现,在跌落高度为40 cm时,肌肉的激活发生了很大变化,而在跌落高度为40 cm时,弯曲角度也发生了变化,这表明40 cm可能是跌落高度的策略。人类着陆时的姿势平衡发生变化。

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