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人类大脑中单神经元对多模态知觉的明确定位。

Explicit encoding of multimodal percepts by single neurons in the human brain.

机构信息

Department of Engineering, University of Leicester, LE1 7RH Leicester, UK.

出版信息

Curr Biol. 2009 Aug 11;19(15):1308-13. doi: 10.1016/j.cub.2009.06.060. Epub 2009 Jul 23.

Abstract

Different pictures of Marilyn Monroe can evoke the same percept, even if greatly modified as in Andy Warhol's famous portraits. But how does the brain recognize highly variable pictures as the same percept? Various studies have provided insights into how visual information is processed along the "ventral pathway," via both single-cell recordings in monkeys and functional imaging in humans. Interestingly, in humans, the same "concept" of Marilyn Monroe can be evoked with other stimulus modalities, for instance by hearing or reading her name. Brain imaging studies have identified cortical areas selective to voices and visual word forms. However, how visual, text, and sound information can elicit a unique percept is still largely unknown. By using presentations of pictures and of spoken and written names, we show that (1) single neurons in the human medial temporal lobe (MTL) respond selectively to representations of the same individual across different sensory modalities; (2) the degree of multimodal invariance increases along the hierarchical structure within the MTL; and (3) such neuronal representations can be generated within less than a day or two. These results demonstrate that single neurons can encode percepts in an explicit, selective, and invariant manner, even if evoked by different sensory modalities.

摘要

不同的玛丽莲·梦露的照片可以唤起相同的感知,即使像安迪·沃霍尔的著名肖像那样被大大修改。但是,大脑如何将高度可变的图像识别为相同的感知呢?各种研究提供了有关视觉信息如何沿着“腹侧通路”进行处理的见解,这是通过猴子的单细胞记录和人类的功能成像来实现的。有趣的是,在人类中,通过其他刺激方式,例如听到或阅读她的名字,也可以唤起对玛丽莲·梦露的相同“概念”。大脑成像研究已经确定了对声音和视觉单词形式有选择性的皮质区域。然而,视觉、文本和声音信息如何引起独特的感知仍然很大程度上未知。通过使用图片、口头和书面名称的呈现,我们表明:(1) 人类内侧颞叶 (MTL) 中的单个神经元会选择性地对不同感觉模式下的同一个人进行反应;(2) 多模态不变性的程度沿着 MTL 内的层次结构增加;(3) 这种神经元表示可以在不到一两天的时间内生成。这些结果表明,单个神经元可以以明确、选择性和不变的方式对感知进行编码,即使是通过不同的感觉模式唤起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fc9/3032396/66fa66726e2c/nihms261113f1.jpg

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