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视觉空间意识与顶枕叶区域:一项高分辨率脑电图研究。

Visuo-spatial consciousness and parieto-occipital areas: a high-resolution EEG study.

作者信息

Babiloni Claudio, Vecchio Fabrizio, Miriello Maurizio, Romani Gian Luca, Rossini Paolo Maria

机构信息

Dip. Fisiologia Umana e Farmacologia, Università La Sapienza, Rome, Italy.

出版信息

Cereb Cortex. 2006 Jan;16(1):37-46. doi: 10.1093/cercor/bhi082. Epub 2005 Mar 30.

Abstract

Conscious and unconscious visuo-spatial processes are mainly related to parieto-occipital cortical activation. In this study, the working hypothesis was that a specific pattern of parieto-occipital activation is induced by conscious, as opposed to unconscious, visuo-spatial processes. Electroencephalographic data (128 channels) were recorded in 12 normal adults during a visuo-spatial task. A cue stimulus appeared on the right or the left (equal probability) monitor side for a 'threshold time' inducing approximately 50% of correct recognitions. It was followed (after 2 s) by visual go stimuli at spatially congruent or incongruent positions with reference to the cue location. The left (right) mouse button was clicked if the go stimulus appeared on the left (right) monitor side. Subjects were required to say 'seen' if they had detected the cue stimulus or 'not seen' if they missed it (self-report). 'Seen' and 'not seen' electroencephalographic trials were averaged separately to form visual evoked potentials. Sources of these potentials were estimated by LORETA software. Reaction time to go stimuli was shorter during spatially congruent than incongruent 'seen' trials, possibly due to covert attention on cue for self-report. It was also shorter during spatially congruent than incongruent 'not seen' trials, as an objective sign of unconscious processes. Cue stimulus evoked parieto-occipital potentials which has the same peak latencies in the 'seen' and 'not seen' cases. Sources of these potentials were located in occipital area 19 and parietal area 7. Source strength was significantly stronger in 'seen' than 'not seen' cases at approximately +300 ms post-stimulus. These results may unveil features of parieto-occipital activation accompanying visuo-spatial consciousness.

摘要

有意识和无意识的视觉空间过程主要与顶枕叶皮质激活有关。在本研究中,工作假设是有意识的视觉空间过程(与无意识的相反)会诱发特定的顶枕叶激活模式。在一项视觉空间任务中,记录了12名正常成年人的脑电图数据(128通道)。一个提示刺激在右侧或左侧(概率相等)显示器上出现“阈值时间”,诱发约50%的正确识别。(2秒后)随后在与提示位置空间一致或不一致的位置出现视觉启动刺激。如果启动刺激出现在左侧(右侧)显示器上,则点击左(右)鼠标按钮。要求受试者如果检测到提示刺激就说“看到了”,如果没检测到就说“没看到”(自我报告)。“看到了”和“没看到”的脑电图试验分别进行平均以形成视觉诱发电位。这些电位的来源通过LORETA软件进行估计。在空间一致的“看到了”试验中,对启动刺激的反应时间比对空间不一致的试验短,这可能是由于自我报告时对提示的隐蔽注意。在空间一致的“没看到”试验中,反应时间也比对空间不一致的试验短,这是无意识过程的一个客观标志。提示刺激诱发顶枕叶电位,在“看到了”和“没看到”的情况下具有相同的峰值潜伏期。这些电位的来源位于枕叶19区和顶叶7区。在刺激后约+300毫秒时,“看到了”情况下的源强度明显强于“没看到”的情况。这些结果可能揭示了伴随视觉空间意识的顶枕叶激活特征。

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