首页> 外文期刊>Applied Ergonomics >Real time relationship between individual finger force and grip exertion on distal phalanges in linear force following tasks
【24h】

Real time relationship between individual finger force and grip exertion on distal phalanges in linear force following tasks

机译:任务后线性力远端角度与握力与握力的实时关系

获取原文
获取原文并翻译 | 示例
       

摘要

Individual forger force (FF) in a grip task is a vital concern in rehabilitation engineering and precise control of manipulators because disorders in any of the fingers will affect the stability or accuracy of the grip force (GF). To understand the functions of each finger in a dynamic grip exertion task, a GF following experiment with four individual fingers without thumb was designed. This study obtained four individual FFs from the distal phalanges with a cylindrical handle in dynamic GF following tasks. Ten healthy male subjects with similar hand sizes participated in the four-finger linear GF following tasks at different submaximal voluntary contraction (SMVC) levels. The total GF, individual FF, finger force contribution, and following error were subsequently calculated and analyzed. The statistics indicated the following: 1) the accuracy and stability of GF at low %MVC were significantly higher than those at high SMVC; 2) at low SMVC, the ability of the fingers to increase the GF was better than the ability to reduce it, but it was contrary at high SMVC; 3) when the target wave (TW) was changing, all four fingers strongly participated in the force exertion, but the participation of the little finger decreased significantly when TW remained stable; 4) the index finger and ring finger had a complementary relationship and played a vital role in the adjustment and control of GF. The middle finger and little finger had a minor influence on the force control mid adjustment. In conclusion, each of the fingers had different functions in a GF following task. These findings can be used in the assessment of finger injury rehabilitation and for algorithms of precise control.
机译:在抓握任务中的单个锻造力(FF)是康复工程中至关重要的关注,并且操纵器的精确控制,因为任何一个手指中的疾病都会影响抓握力(GF)的稳定性或准确性。为了了解每个手指的功能,在动态抓地力耗尽任务中,设计了一个GF,在实验后,设计了四个没有拇指的单独手指。该研究在任务之后动态GF中的具有圆柱形手柄的远端波兰语获得了四个单独的FF。具有相似手尺寸的十个健康的男性受试者参加了不同潜冲自愿收缩(SMVC)水平的任务之后的四指线性GF。随后计算并分析了总GF,单个FF,手指力贡献和以下错误。统计数据如下:1)低%MVC下GF的准确度和稳定性明显高于高SMVC; 2)在低SMVC时,手指增加GF的能力优于减少它的能力,但它在高SMVC时恰恰相反; 3)当目标波(TW)变化时,所有四个手指都强烈地参与了力量劳累,但是当TW保持稳定时,小指的参与明显减少; 4)食指和戒指手指具有互补关系,并在GF的调整和控制方面发挥了至关重要的作用。中指和小指对力控制中调节的影响很小。总之,每个手指在任务之后的GF中具有不同的功能。这些发现可用于评估手指损伤康复和精确控制的算法。

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