...
首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Modified electromyography-assisted optimization approach for predicting lumbar spine loading while walking with backpack loads
【24h】

Modified electromyography-assisted optimization approach for predicting lumbar spine loading while walking with backpack loads

机译:用背包负载行走时,改进的肌电图辅助优化方法预测腰椎脊柱装载

获取原文
获取原文并翻译 | 示例
           

摘要

This study modified an electromyography-assisted optimization approach for predicting lumbar spine loading while walking with backpack loads. The modified-electromyography-assisted optimization approach eliminated the electromyography measurement at maximal voluntary contraction and adopted a linear electromyography-force relationship. Moreover, an optimal lower boundary condition for muscle gain was introduced to constrain the trunk muscle co-activation. Anthropometric information of 10 healthy young men as well as their kinematic, kinetic, and electromyography data obtained while walking with backpack loads were used as inputs in this study. A computational algorithm was used to find and analyse the sensitivity of the optimal lower boundary condition for achieving minimum deviation of the modified-electromyography-assisted optimization approach from the electromyography-assisted optimization approach for predicting lumbosacral joint compression force. Results validated that the modified-electromyography-assisted optimization approach (at optimal lower boundary condition of 0.92) predicted on average, a non-significant deviation in peak lumbosacral joint compression force of -18 N, a standard error of 9 N, and a root mean square difference in force profile of 73.8 N. The modified-electromyography-assisted optimization approach simplified the experimental process by eliminating the electromyography measurement at maximal voluntary contraction and provided comparable estimations for lumbosacral joint compression force that is also applicable to patients or individuals having difficulty in performing the maximal voluntary contraction activity.
机译:该研究改变了一种肌电图辅助优化方法,用于预测腰椎脊柱装载,同时用背包负载行走。改性 - 电拍摄辅助优化方法消除了最大自愿收缩的肌电学测量,采用了线性电焦 - 力关系。此外,引入了肌肉增益的最佳下限条件以限制躯干肌肉共激活。使用背包载荷的同时获得10个健康年轻男性及其运动学,动力学和电拍摄数据的人类测量信息用作本研究中的输入。计算算法用于寻找和分析最佳下边界条件的灵敏度,以实现从肌电图辅助优化方法来实现改进的电拍摄辅助优化方法的最小偏差,以预测腰骶关节压缩力。结果验证了改进的电核目辅助优化方法(在0.92的最佳下边界条件下)平均预测,峰值腰骶关节压缩力的非显着偏差为-18 n,标准误差为9 n,ob 53.8 n的力分布的平均方形差异。通过消除最大自愿收缩的肌电图测量,改进的电核鸟辅助优化方法简化了实验过程,并为腰骶关节压缩力提供了可比的估计,这也适用于患者或难以遇到的患者或个人在进行最大自愿收缩活动时。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号