部肌肉振动改变了与运动技能相关的小脑处理,并获得了基于自身感知的任务
Hailey Tabbert1, Ushani Ambalavanar1, Bernadette Murphy1
1Faculty of Health Sciences, Ontario Tech University, Oshawa, ON L1G 0C5, Canada.
Brain sciences
|October 28, 2023
概括
部振动会改变与小脑功能相关的体感唤起潜能 (SEP),影响运动学习后的神经处理. 这表明,自感输入的变化在感觉运动集成过程中会影响小脑通路.
科学领域:
- 神经科学是一个神经科学.
- 发动机控制器的控制器
- 身体感官系统 身体感官系统
背景情况:
- 部疲劳和疼痛会扰乱感官运动整合和皮层-大脑小区处理.
- 肌肉的反受振动的影响,但它对运动学习后的神经处理的影响尚不清楚.
研究的目的:
- 为了研究通过振动影响部感官输入的短暂变化是否会影响获得自感任务后的神经处理.
- 检查部振动对体感唤起潜能 (SEP) 和运动性能保留的影响.
主要方法:
- 25名参与者执行了一项力量匹配跟踪任务.
- 在任务获取之前和之后测量了体感唤起潜力 (SEP).
- 参与者接受了10分钟的休息 (对照组) 或60Hz的部振动 (振动组).
- 24小时后,运动性能被评估为保留.
主要成果:
- 对于N18和N24SEP峰值,发现了显著的分组时间相互作用,表明大脑小脑输入和处理发生了变化.
- 振动组显示N18 SEP峰值下降,而对照组显示增加.
- 这两组在获得后和保留时都改善了运动性能,但依赖于组的SEP变化表明大脑小道的变化.
结论:
- 来自部振动的改变的自感输入会影响小脑通路.
- 部振动可以改变与感官运动集成和运动学习相关的神经处理.
- 需要进一步的研究,以了解改变自身感知输入对运动控制的长期影响.
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