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解码来自人类颞叶多个神经元的视觉输入。

Decoding visual inputs from multiple neurons in the human temporal lobe.

作者信息

Quiroga R Quian, Reddy L, Koch C, Fried I

机构信息

Department of Engineering, University of Leicester, Leicester, UK.

出版信息

J Neurophysiol. 2007 Oct;98(4):1997-2007. doi: 10.1152/jn.00125.2007. Epub 2007 Aug 1.

Abstract

We investigated the representation of visual inputs by multiple simultaneously recorded single neurons in the human medial temporal lobe, using their firing rates to infer which images were shown to subjects. The selectivity of these neurons was quantified with a novel measure. About four spikes per neuron, triggered between 300 and 600 ms after image onset in a handful of units (7.8 on average), predicted the identity of images far above chance. Decoding performance increased linearly with the number of units considered, peaked between 400 and 500 ms, did not improve when considering correlations among simultaneously recorded units, and generalized to very different images. The feasibility of decoding sensory information from human extracellular recordings has implications for the development of brain-machine interfaces.

摘要

我们通过同时记录人类内侧颞叶中多个单个神经元的活动来研究视觉输入的表征,利用它们的放电率来推断向受试者展示了哪些图像。这些神经元的选择性通过一种新的测量方法进行量化。在少数单元(平均7.8个)中,图像呈现后300至600毫秒之间触发的每个神经元约4个尖峰,就能以远高于随机水平的准确率预测图像的身份。解码性能随所考虑单元数量的增加呈线性提高,在400至500毫秒之间达到峰值,在考虑同时记录单元之间的相关性时并无改善,并且能够推广到非常不同的图像上。从人类细胞外记录中解码感官信息的可行性对脑机接口的发展具有重要意义。

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