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Development of an Enhanced Musculoskeletal Model for Simulating Lumbar Spine Loading During Manual Lifting Tasks

机译:增强的肌肉骨骼模型,用于模拟手动举重任务期间的腰椎负荷

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During manual lifting tasks, extreme loads, intervertebral shear forces, repeated loading and improper lifting techniques all contribute to the risks of back pain and injuries. A three-dimensional (3D) multi-segment musculoskeletal model, which includes 49° of freedom (DOFs) and 258 muscle-tendon units, was developed in this study for simulating loading conditions of the lower back during manual lifting tasks. The model was created in OpenSim, an open-source computer simulation platform. The enhanced musculoskeletal model provides a tool for more comprehensive simulations of lifting motions. To evaluate the capacity of the model for estimation of spinal loading, the loading at the L3/L4-L5/S1 under different lifting tasks were examined and compared with published data. The results encourage the feasibility of applying the model to research questions relating to lumbar spine loading.
机译:在手动起重任务中,极高的载荷,椎间剪切力,反复载荷和不正确的举升技术都会造成背痛和受伤的风险。本研究开发了三维(3D)多节肌肉骨骼模型,该模型包含49个自由度(DOF)和258个肌腱单元,用于模拟手动提升任务期间下背部的负重状况。该模型是在开源计算机仿真平台OpenSim中创建的。增强的肌肉骨骼模型提供了一种工具,可对举升运动进行更全面的模拟。为了评估模型估算脊柱负荷的能力,检查了在不同提升任务下L3 / L4-L5 / S1处的负荷,并将其与公开数据进行了比较。结果鼓励了将该模型应用于与腰椎负荷有关的研究问题的可行性。

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