超越特定感官处理:从触摸和声音化运动中解码大脑中的纹理.
C Landelle1,2, J Caron-Guyon2,3, B Nazarian4
1McGill University, McConnell Brain Imaging Centre, Department of Neurology and Neurosurgery, Montreal Neurological Institute, Montreal, QC, Canada.
iScience
|October 9, 2023
概括
大脑使用共享的神经通路通过触摸和声音来处理纹理,揭示了主要感官区域的多感官集成. 这挑战了传统观点,并突出了环境相互作用的多功能纹理表示.
科学领域:
- 神经科学是一个神经科学.
- 感官感知是一种感官感知.
- 多感官集成的整合.
背景情况:
- 纹理感知对于对象交互至关重要.
- 它依赖于多感官信息,包括触觉和听觉线索.
- 分享的神经表征可能能够实现连贯的多感官感知.
研究的目的:
- 通过听觉和触觉方式来调查用于纹理感知的共享大脑表征.
- 测试多感官集成发生在初级感官皮层中的假设.
主要方法:
- 参与者使用触觉,听觉或组合线索执行了纹理粗度估计任务.
- 功能磁共振成像 (fMRI) 用于监测大脑活动.
- 多变量模式分析 (MVPA) 检查了神经活动模式.
主要成果:
- 体感,听觉和视觉皮层在触觉和听觉纹理探索期间都显示出激活.
- 在二次体感 (S2) 和初级听觉皮层中发现了音触一体化.
- 在初级运动和体感皮层中发现了用于纹理歧视的共享空间活动模式.
结论:
- 主要感官皮层和S2表现出多功能,多感官纹理表示.
- 这挑战了早期皮质区域严格感官特定处理的概念.
- 这些发现对理解大脑如何整合多感官信息来与环境相互作用有意义.
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