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Updated: Sep 10, 2025

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Procedures for Rat in situ Skeletal Muscle Contractile Properties
Published on: October 15, 2011
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在以最佳节奏进行冲刺循环时的肌肉力量和力量
Matthew T O Worsey1, Claire B Crossley1, Thomas Wackwitz2
1Australian Centre for Precision Health and Technology (PRECISE), Griffith University, Gold Coast, Queensland 4215, Australia; School of Allied Health, Sport and Social Work, Griffith University, Gold Coast, Queensland 4215, Australia.
Journal of biomechanics
|August 23, 2025
概括
这项研究使用EMG信息模型分析了冲刺骑行期间的下肢肌单元 (MTU) 的力量和力量. adductor 组和 vastus lateralis 是在不同循环阶段产生力和电力的关键贡献者.
科学领域:
- 生物力学
- 运动科学
- 人类运动分析
背景情况:
- 冲刺循环需要下肢肌单位 (MTU) 的最大功率输出.
- 了解单个MTU产生的特定力量和功率对于优化性能至关重要.
- 之前的研究往往侧重于整体肢体动态,而不是详细的MTU贡献.
研究的目的:
- 量化18个下肢MTU在最大力度冲刺循环过程中产生的力量和功率.
- 在踏板冲动的不同阶段确定负责力和功率的主要MTU.
- 探索MTU发电配置中的个体差异.
主要方法:
- 七名参与者 (2名女性) 以最佳的节奏进行了最大限度的冲刺骑行.
- 采集了三维运动捕捉,踏板力测量和表面电肌图 (EMG).
- 用参与者校准的EMG信息的神经肌肉骨模型来计算MTU力量和功率.
主要成果:
- 在推进阶段,带组产生了最高的平均力,而横向带则产生了最高的平均正力.
- 在拉动阶段, 带组再次显示出最高的平均力和功率.
- 在过渡阶段, 横向巨人产生了最高的平均力和功率.
结论:
- 特定的MTU,特别是引体组和大侧,在冲刺循环过程中在力量和发电方面发挥关键作用.
- 存在MTU发电配置的个体差异,表明个性化培训策略的潜力.
- 需要进一步的研究来调查基于这些MTU特定模型的训练干预措施是否可以提高冲刺循环的性能.
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