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Biomechanical Simulation for Sagittal Lifting: an Approach

机译:矢状抬起的生物力学模拟:一种方法

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This paper reports on a dynamic simulation model developed for biomechanical analyses of lifting activities performed in the sagittal plane. The model simulates the dynamic motion of lifting tasks for five body joints: the elbow,shoulder,hip,knee,and ankle. The inputs to the model include initial and final joint postures; gender,weight,and height; weight of load; lifting height; and container dimensions. The model predicts the kinetics and kinematics for the lift. Actual motion data were collected using 10 subjects in the laboratory for 360 lifts which consisting of 12 lifting tasks including two lifting heights, two container sizes,and three weights of load. Results demonstrate that the simulation model can be an effective alternative to collecting posture and time-displacement data for lifting task analyses.
机译:本文报告了一个动态仿真模型,该模型用于在矢状平面内进行举升活动的生物力学分析。该模型模拟了五个身体关节(肘部,肩膀,臀部,膝盖和脚踝)的举升任务的动态运动。模型的输入包括初始和最终的关节姿势;性别,体重和身高;负载重量;提升高度和容器尺寸。该模型预测举升的动力学和运动学。实际运动数据是在实验室使用10名受试者收集的360次升降机中收集的,包括12个升降机任务,包括两个升降机高度,两个集装箱尺寸和三个重量。结果表明,该仿真模型可以有效地代替姿势和时间位移数据进行提升任务分析。

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