视觉诱导的动力图像对电机适应逆转方向循环的影响. 一个随机对照试验
Daniel Muñoz-García1, J Ignacio Serrano2, Raúl Ferrer-Peña1
1Universidad Autónoma de Madrid.
Research quarterly for exercise and sport
|October 12, 2023
概括
使用虚拟现实和运动图像的神经调制并没有增强复杂平衡任务的运动适应性. 然而,它有利于具有较低自感平衡的个体,建议量身定制的应用.
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
- 康复 康复 康复 康复
背景情况:
- 运动适应对于学习复杂的运动技能至关重要,特别是涉及平衡的运动技能.
- 研究神经调节技术,包括运动图像和动作观察,以增强运动学习.
- 了解先前平衡因素对运动适应的影响对于个性化干预至关重要.
研究的目的:
- 测试神经调节 (视觉运动图像) 以促进复杂平衡任务中的运动适应.
- 确定影响健康成年人运动适应成功的先前平衡因素.
主要方法:
- 这是一项双盲随机对照试验,涉及48名健康参与者.
- 参与者在基线平衡评估 (步行和站立) 后适应骑反转方向自行车 (ISB).
- 干预组接受了基于VR的神经调制 (ISB骑行的视觉运动图像);对照组观看了景观图像.
主要成果:
- 神经调节组与对照组相比,运动适应率没有改善,适应时间更长.
- 运动适应的成功与对照组的先前自感平衡相关.
- 在神经调节组中,没有发现先前平衡特征和运动适应结果之间的关系.
结论:
- 视觉引导的神经调节可能有利于低自感平衡的个体的运动适应.
- 之前的平衡特征可以预测运动适应的成功,并告知神经调节处方.
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