Abtahi Sayed Mohammad Ali, Jamshidi Nima, Ghaziasgar Aram
a Department of Biomedical Engineering, Faculty of Engineering , University of Isfahan , Isfahan , Iran.
b Department of Mechanical Engineering , Isfahan University of Technology , Isfahan , Iran.
Comput Methods Biomech Biomed Engin. 2018 Feb;21(3):201-207. doi: 10.1080/10255842.2018.1438417. Epub 2018 Feb 21.
The purpose of this simulation study was to analyze the effect of variation in Knee-Ankle-Foot-Orthosis stiffness on the joint power and the energy cost of walking. The effect of contractile tissue was simulated using linear elastic spring and viscous dampers in knee and ankle joints. Then, joint angles, ground reaction force, were collected from Twenty chronic hemiparesis subjects (15 males and 5 females) and twenty control subjects (14 males and 6 females), and spring stiffness were considered as the inputs. In this new study, the generated muscle torques were optimized by changing the stiffness as the desired output in the mathematical model attained by the MATLAB SimMechanics toolbox. Finally, the simulated mathematical model was introduced as an appropriate substitute in obtaining the optimized stiffness with a more convenient and efficient designed orthosis.
本模拟研究的目的是分析膝-踝-足矫形器刚度变化对关节功率和步行能量消耗的影响。使用线性弹性弹簧和粘性阻尼器模拟膝关节和踝关节中收缩组织的作用。然后,从20名慢性偏瘫患者(15名男性和5名女性)和20名对照受试者(14名男性和6名女性)收集关节角度、地面反作用力,并将弹簧刚度作为输入。在这项新研究中,通过改变刚度来优化产生的肌肉扭矩,刚度是MATLAB SimMechanics工具箱获得的数学模型中的期望输出。最后,引入模拟数学模型作为一种合适的替代方法,以更方便、高效地设计矫形器来获得优化的刚度。