Aoyama Atsushi, Endo Hiroshi, Honda Satoshi, Takeda Tsunehiro
Graduate School of Science and Technology, Keio University, Yokohama, Kanagawa, Japan.
Neuroreport. 2007 Dec 3;18(18):1987-90. doi: 10.1097/WNR.0b013e3282f240d8.
Brain activity was measured by magnetoencephalography to investigate the spatiotemporal stage of visual processing at which predictive and sensory integration begins. We examined the consequences of a visual mismatch between preliminary prediction and incoming stimulus. Following auditory cues (1000- and 1250-Hz tones) for prediction, congruent and incongruent images, pictures of two musical keys, were presented to volunteers. When they predicted visual inputs on the basis of preceding auditory cues, we detected a mismatch signal for predictive-sensory incongruities in the striate and extrastriate areas for 100-200 ms after image presentation. As this signal reflects a compatibility analysis, we propose that the integration process begins in these areas approximately 100 ms after image presentation.
通过脑磁图测量大脑活动,以研究视觉处理的时空阶段,即预测与感觉整合开始的阶段。我们研究了初步预测与传入刺激之间视觉不匹配的后果。在听觉线索(1000赫兹和1250赫兹音调)用于预测之后,向志愿者呈现一致和不一致的图像,即两个音乐键的图片。当他们根据先前的听觉线索预测视觉输入时,在图像呈现后100 - 200毫秒内,我们在纹状区和纹状外区检测到了预测 - 感觉不一致的失配信号。由于该信号反映了兼容性分析,我们提出整合过程在图像呈现后约100毫秒在这些区域开始。