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首页> 外文期刊>Acta Orthopaedica et Traumatologica Turcica >Biomechanical effects of daily physical activities on the lower limb
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Biomechanical effects of daily physical activities on the lower limb

机译:日常体育活动对下肢的生物力学影响

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Objective: The aim of this study was to determine the joint torques on the lower extremity during the daily physical activity movements of sit-to-stand, crouch down-stand up, and stair climbing without using an external device. Methods: The study subject was a healthy 26-year-old male without any physical problems. A linksegment model was prepared according to the subject’s individual anthropometric characteristics and transferred to the MATLAB? program. Joint torques were calculated using SimMechanics? software. Motions were recorded by one digital video camera as the subject performed the movements (sit-tostand from 20 cm and 40 cm height, crouch down-stand up, and climbing 10 cm and 20 cm high step) and the joint’s position data was obtained using a digitization process. In addition, the vertical ground reaction forces were measured using a force plate in order to test the accuracy of the link-segment model. Lower extremity joint torques were calculated. Results: Maximum joint torques occurred in the knee joint. The knee and the ankle joints were the most loaded joint during the high step movement. The highest torques of the knee and ankle joint were 157.2 Nm and 146 Nm, respectively, during the movements. Knee joint torque and the ankle joint torque increased when the sitting height increased. The hip joint experienced the least amount of load during the movements. Conclusion: The knee joint has enough strength against high torques during extension and flexion movement. Joint torques can be successfully calculated using a simulation process involving an inverse dynamics method without an external device mounted on the limbs. The obtained data can be used in the design of prosthetics and orthotics and for structural analysis of the bones.
机译:目的:这项研究的目的是在不使用外部设备的情况下,确定坐姿到站立姿势,蹲下站立姿势和爬楼梯的日常体育活动过程中下肢的关节扭矩。方法:研究对象为健康的26岁男性,无任何身体问题。根据受试者的个体人体测量学特征准备了一个链接段模型,并将其转移到MATLAB?程序。关节扭矩是使用SimMechanics计算的?软件。当受试者进行运动时(一人坐着从20厘米和40厘米的高度站立,蹲下站立并向上爬10厘米和20厘米的高度),用一台数字摄像机记录运动,并使用以下方法获得关节的位置数据:数字化过程。此外,使用测力板测量垂直地面反作用力,以测试链节模型的准确性。计算下肢关节扭矩。结果:最大膝关节扭矩发生在膝关节。在高步运动中,膝盖和踝关节是最重的关节。在运动过程中,膝关节和踝关节的最大扭矩分别为157.2 Nm和146 Nm。坐姿增加时,膝关节扭矩和踝关节扭矩增加。髋关节在运动过程中承受的负荷最小。结论:膝关节在伸展和屈曲运动过程中具有足够的强度抵抗高扭矩。可以使用模拟过程成功地计算出联合扭矩,而无需在肢体上安装外部设备,该模拟过程包括逆动力学方法。所获得的数据可用于假肢和矫形器的设计以及骨骼的结构分析。

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