在初级运动皮层中,多感官集成和运动共振
Serena Giurgola1, Emanuele Lo Gerfo2, Alessandro Farnè3
1Department of Psychology & NeuroMI - Milan Center for Neuroscience, University of Milano-Bicocca, Milan, Italy.
概括
同时看到和听到语音可以提高音节识别,并提高运动皮层的刺激性. 这种多感官集成通过影响运动系统对声音的共振来改善语音处理.
科学领域:
- 神经科学是一个神经科学.
- 语音感知 语音感知
- 多感官集成的多感官集成
背景情况:
- 人类的运动系统与语音产生共.
- 视觉唇部运动通过运动共振对语音感知的影响尚不清楚.
研究的目的:
- 研究视觉唇部信息如何影响运动层面的语音感知.
- 探索多感官集成在语音感知中的行为和神经生理学证据.
主要方法:
- 从唇部肌肉 (orbicularis oris) 中记录了运动唤起的潜能 (MEPs),使用的是跨磁刺激 (TMS).
- 呈现的音节在单模 (听觉/视觉) 和多感觉 (音视觉) 合适/不合适的条件健康的参与者.
主要成果:
- 在行为上,参与者在一致的视听条件下比在单模条件下更好地识别音节.
- 在神经生理学上,MEP振幅在相应的视听条件下增加.
- 来自不相称的刺激的幻觉感知并没有增强皮质脊髓刺激能力.
结论:
- 一致的视听语音增强了初级运动皮层中的唇表达刺激性.
- 多感官集成通过调节运动共振来促进语音处理.
- 多感官相互作用发生在主要的运动区域,而不仅仅是高阶区域.
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