不同的感觉信息用于静止或移动时的状态估计
Aaron L Wong1,2, Alyssa N Eyssalenne1, Luke Carter1
1Moss Rehabilitation Research Institute, Thomas Jefferson University, Elkins Park, PA, USA.
bioRxiv : the preprint server for biology
|September 21, 2023
概括
多感官集成可以在静态状态下改善肢体状态估计,但在运动时不能. 我们的发现表明,大脑使用不同的感官反策略来移动与静止的四肢.
科学领域:
- 神经科学是一个神经科学.
- 人类运动控制器
- 感官处理 感官处理
背景情况:
- 准确的四肢状态估计对于运动至关重要.
- 视觉和自身感知反的多感官集成增强了静态四肢位置的估计.
- 感官反延迟可能会阻碍运动期间的多感官集成.
研究的目的:
- 调查感官反延迟如何影响多感官集成,以估计肢体在运动中的状态.
- 测试多感官集成是否不利于移动四肢与静止四肢相比.
主要方法:
- 开发了一种包含感官延迟的多感官集成的最大概率估计模型.
- 与人类实验对象进行实验,以在静态和动态条件下比较四肢位置估计.
- 引入不一致的视觉或自身感知反来评估感官模式之间的干扰.
主要成果:
- 模型预测,在被动四肢运动期间,多感官集成的益处减少.
- 静态四肢位置估计显示出不一致的反带来的显著干扰.
- 动态四肢位置估计显示没有干扰,参与者选择性地使用感官模式.
结论:
- 大脑使用不同的感官反策略,用于静态与移动的肢体.
- 静态四肢状态估计有利于多式联络整合.
- 动态四肢状态估计更多地依赖于单一的感官模式反.
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