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人类皮层对视觉噪声对比度调制的反应。

Human cortical responses to contrast modulations of visual noise.

作者信息

Calvert Julie, Manahilov Velitchko, Simpson William A, Parker Denis M

机构信息

Department of Vision Sciences, Glasgow Caledonian University, Cowcaddens Road, Glasgow G4 0BA, UK.

出版信息

Vision Res. 2005 Aug;45(17):2218-30. doi: 10.1016/j.visres.2005.02.012. Epub 2005 Mar 21.

Abstract

We studied visual evoked potentials (VEPs) elicited by second-order contrast modulations of binary dynamic noise and first-order luminance modulations. Using a 3-point Laplacian operator centred on Oz, we found that contrast modulations of both low and higher spatial frequencies elicited a negative component whose latency was about 200 ms. The latency of this component was significantly longer than that of the early Laplacian components to first-order luminance modulations. These findings could be due to slower first-stage linear filters and additional processing stages of the second-order pathway. The topographical analysis of scalp recorded VEPs to central and half-field stimulation has suggested that the responses to second-order patterns are likely to be generated by neuronal structures within the primary visual cortex which may have inputs from extrastriate neurons via feedback connections.

摘要

我们研究了由二元动态噪声的二阶对比度调制和一阶亮度调制所诱发的视觉诱发电位(VEP)。使用以Oz为中心的三点拉普拉斯算子,我们发现低空间频率和高空间频率的对比度调制均诱发了一个潜伏期约为200毫秒的负性成分。该成分的潜伏期显著长于对一阶亮度调制的早期拉普拉斯成分的潜伏期。这些发现可能归因于二阶通路中较慢的第一阶段线性滤波器和额外的处理阶段。对头皮记录的中央和半视野刺激VEP的地形分析表明,对二阶模式的反应可能由初级视觉皮层内的神经元结构产生,这些神经元结构可能通过反馈连接接收来自纹外神经元的输入。

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