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Updated: Jun 6, 2025

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Experimental Methods to Study Human Postural Control
Published on: September 11, 2019
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人类脚 flexor 肌肉的扭矩-角度关系突出显示了它们在步行中的推进能力
Samuel J Wisdish1, Hannah M Rice2, Dominic J Farris1
1Public Health and Sport Sciences, Faculty of Health and Life Sciences, University of Exeter, St Luke's Campus, Exeter, EX1 2LU, UK.
The Journal of experimental biology
|November 28, 2024
概括
主要是活跃的脚肌肉,而不是被动的结构,在走路和跑步时主要驱动脚的推进. 这凸显了足部内在肌肉在人类双脚运动和直立姿势中的关键作用.
科学领域:
- 生物力学 生物力学
- 人类的机动运动
- 肌肉骨生理学 肌肉骨生理学
背景情况:
- 人类双脚运动取决于脚的结构和功能,特别是步行推进过程中的脚曲.
- 活跃肌肉和被动结构对曲扭矩的精确贡献尚未完全理解.
研究的目的:
- 区分和量化脚曲扭矩角度关系的脚部内在肌肉 (PIMs),外在肌肉,和被动结构.
- 评估这些结构在走路和跑步时的力量产生能力.
主要方法:
- 收集了9名健康成年人的扭矩角度数据,他们使用神经的穿皮电刺激.
- 在两个部位施加刺激,以在MTP关节分离肌肉驱动与被动脚屈曲扭矩.
主要成果:
- 与PIM单独相比,外部和PIMs的联合刺激产生了明显更高的峰值扭矩 (hallux: 208%的增加;较小的数字:150%的增加).
- 活动肌肉扭矩是MTP关节扭矩在步态相关的角度的主要贡献者,超过了被动扭矩.
- 步行时的MTP关节角度落在主动扭矩-角度关系的上升分支上.
结论:
- 人类脚曲器非常适合产生必要的MTP关节扭矩,用于走路和跑步.
- 足部内的肌肉对于其机械功能和直立双脚运动至关重要.
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