首页> 外文期刊>JSME International Journal. Series C >Computer Simulation Study of Human Locomotion with a Three-Dimensional Entire-Body Neuro-Musculo-Skeletal Model (Ⅳ. Simulation of Running Motion and Its Transition Process)
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Computer Simulation Study of Human Locomotion with a Three-Dimensional Entire-Body Neuro-Musculo-Skeletal Model (Ⅳ. Simulation of Running Motion and Its Transition Process)

机译:三维整体神经肌肉骨骼模型对人体运动的计算机仿真研究(Ⅳ。跑步运动及其过渡过程的仿真)

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摘要

In the present study, the computer simulation technique to autonomously generate running motion from walking was developed using a three-dimensional entire-body neuro-musculo-skeletal model. When maximizing locomotive speed was employed as the evaluative criterion, the initial walking pattern could not transition to a valid running motion. When minimizing the period of foot-ground contact was added to this evaluative criterion, the simulation model autonomously produced appropriate three-dimensional running. Changes in the neuronal system showed the fatigue coefficient of the neural oscillators to reduce as locomotion patterns transitioned from walking to running. Then, when the running speed increased, the amplitude of the non-specific stimulus from the higher center increased. These two changes indicate mean that the improvement in responsiveness of the neuronal system is important for the transition process from walking to running, and that the comprehensive activation level of the neuronal system is essential in the process of increasing running speed.
机译:在本研究中,使用三维全身神经肌肉骨骼模型开发了一种计算机模拟技术,该技术可以从行走中自动生成跑步运动。当采用最大机车速度作为评估标准时,初始步行模式无法转变为有效的跑步运动。当将人与地面接触的时间最小化添加到该评估标准时,模拟模型会自主产生适当的三维运行。神经系统的变化表明,随着运动方式从行走过渡到跑步,神经振荡器的疲劳系数降低。然后,当跑步速度增加时,来自较高中心的非特定刺激的幅度增加。这两个变化表明,神经系统响应能力的提高对于从步行到跑步的过渡过程非常重要,并且神经系统的全面激活水平对于提高跑步速度至关重要。

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