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Cosimulation of Linear Feedback Postural Sway Model to Explore the Effects of Parkinson's Disease.

机译:线性仿真姿势摇摆模型的协同仿真,探讨帕金森氏病的影响。

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摘要

The focus of this study was to design and develop a postural sway model using cosimulation of ADAMS dynamic modelling software and Simulink as the control system. This model could then be used to study the biomechanics and neuromuscular control of the system through physiological input parameters (controller gains, neuromuscular noise, and feedback time delay) and center of pressure (COP) output parameters. In the first study, we showed the characteristics of the model input parameters and their effect on the model robustness and COP output measures. Finally, we were able to develop a set of input model parameters that validated the model COP measures with experimental COP measures observed in healthy control (HC) subjects during eyes closed stance.;In the second study, the validated HC parameters were used as a baseline for investigation of the effects of the changes of the input model parameters on the model COP measures when related to the experimental COP measures of a HC group and Parkinson's disease (PD) group. This study showed that when the feedback time delay and proportional gain were independently studied and manipulated from the HC base set, no changes in the model COP measures could be related exclusively to either group. When investigating the neuromuscular noise and derivative gain parameters, varying these parameters caused changes in output COP measures that specifically related to PD and HC groups.;This study has shown the possibility of reverse engineering biomechanics measures back to the control system. This allows for more complex models to be investigated and further studies to be carried out on subjects with injury, who are aging, or possess a neurological disease.
机译:本研究的重点是使用ADAMS动态建模软件和Simulink作为控制系统的协同仿真来设计和开发姿势摇摆模型。然后,可以通过生理输入参数(控制器增益,神经肌肉噪声和反馈时间延迟)和压力中心(COP)输出参数,使用该模型来研究系统的生物力学和神经肌肉控制。在第一个研究中,我们展示了模型输入参数的特征及其对模型鲁棒性和COP输出量度的影响。最后,我们能够开发出一组输入模型参数,这些模型参数使用健康对照组(HC)闭眼时观察到的实验COP量度来验证模型COP量度。在第二项研究中,将验证过的HC参数用作与HC组和帕金森氏病(PD)组的实验COP度量相关的调查输入模型参数变化对模型COP度量的影响的基准。这项研究表明,当从HC基本集独立研究和操纵反馈时间延迟和比例增益时,模型COP度量的任何变化都不能仅与任一组相关。在研究神经肌肉噪声和微分增益参数时,改变这些参数会导致与PD和HC组特别相关的输出COP度量值的变化。这项研究表明了逆向工程生物力学度量值回到控制系统的可能性。这样就可以研究更复杂的模型,并可以对年龄较大或患有神经疾病的受伤受试者进行进一步的研究。

著录项

  • 作者

    Reagan, Corbin N.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Biomechanics.;Biomedical engineering.;Neurosciences.
  • 学位 M.E.
  • 年度 2015
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:22

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