...
首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Effect of Ankle-Pivot Misalignment and Upward Ankle Vertical Displacement on Stability and Equilibrium Location for an Ankle-Hip Model of Balance on a Balance Board
【24h】

Effect of Ankle-Pivot Misalignment and Upward Ankle Vertical Displacement on Stability and Equilibrium Location for an Ankle-Hip Model of Balance on a Balance Board

机译:Ankle-Pivot Misalalignment和Upward踝关节垂直位移对平衡板踝关节平衡模型的稳定性和平衡位置的影响

获取原文
获取原文并翻译 | 示例

摘要

During individual training on a balance board (BB), misalignment between the ankle joint and the BB axis of rotation may exist. The ankle-pivot misalignment influences the dynamics of human balance and more importantly, the stability properties of the equilibrium positions of the human-BB dynamical system. Similarly, ankle displacement in the upward direction with respect to the BB pivot also plays a critical role in the stability properties of the human-BB system. This paper investigates these effects through bifurcation analyses performed to the ankle-hip model of balance on a BB developed in our previous work. By using local bifurcation analyses, we have obtained the stability regions of the upright posture (UP) of a human-BB model of balance in different parameter spaces. The stability regions are delimited by Hopf, pitchfork, and saddle-node bifurcation curves in some selected parameter spaces. Results show that ankle-pivot misalignment has an impact on the location of the Hopf and unfolds the pitchfork bifurcation curves (found in the aligned case) into saddle-node bifurcation curves. Moreover, ankle-pivot misalignment breaks the mirror symmetry of upright static equilibrium positions and induces the establishment of equilibrium positions away from the vertical UP. With respect to the ankle vertical displacement, it has a minimal impact on the location of the pitchfork bifurcation curves but has a large impact on the location of the Hopf bifurcation curves, especially when combined with large BB time delay. This suggests that a larger ankle vertical displacement may result in sway oscillations of larger amplitude. The analyses also provide insight into different mechanisms of stability that can be found in the ankle-hip model of balance on a BB, namely, limit cycle oscillations and leaning postures. If an individual suffers from neuropathy, results from this study can be useful for researchers and clinicians in understanding what types of instabilities might be encountered, and during rehabilitation how to position the subjects carefully to avoid inadvertent instabilities.
机译:在平衡板(BB)上进行个人训练时,踝关节和BB旋转轴之间可能存在错位。踝关节枢轴错位影响人体平衡的动力学,更重要的是,影响人体BB动力系统平衡位置的稳定性。同样,脚踝相对于BB枢轴向上的位移也对人体BB系统的稳定性起着关键作用。本文通过对我们之前工作中开发的BB上的踝-髋平衡模型进行分岔分析来研究这些影响。通过局部分岔分析,我们得到了人体平衡BB模型在不同参数空间的直立姿势(UP)的稳定区域。在某些选定的参数空间中,稳定性区域由Hopf、pitchfork和鞍结分岔曲线分隔。结果表明,踝关节枢轴错位对Hopf的位置有影响,并将干叉分叉曲线(在对齐的情况下发现)展开为鞍结分叉曲线。此外,脚踝枢轴错位破坏了直立静态平衡位置的镜像对称性,并导致平衡位置的建立远离垂直向上。就踝关节垂直位移而言,它对干草叉分叉曲线的位置影响最小,但对Hopf分叉曲线的位置影响较大,尤其是当与大BB时延组合时。这表明,较大的脚踝垂直位移可能会导致较大幅度的摇摆振荡。这些分析还提供了在BB平衡的踝-髋模型中可以找到的不同稳定性机制的见解,即极限环振荡和倾斜姿势。如果一个人患有神经病变,本研究的结果将有助于研究人员和临床医生了解可能遇到的不稳定性类型,以及在康复过程中如何仔细定位受试者,以避免意外的不稳定性。

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