Centre for Systems Neuroscience, University of Leicester, Leicester LE1 7RH, United Kingdom.
J Neurosci. 2013 Jan 23;33(4):1337-43. doi: 10.1523/JNEUROSCI.1226-12.2013.
When a face is flashed to an observer, a large negative component is elicited in the occipitotemporal cortex at ∼170 ms from the onset of presentation (N170). Previous studies have shown that the average N170 is correlated with conscious face perception; however, the single-trial mechanisms underlying such modulation remain largely unexplored. Here, we studied in human subjects the average and the single-trial N170 responses to briefly flashed faces, coupled with backward masking and varying degrees of Gaussian noise. In the average evoked responses we observed that, at fixed levels of noise, supraliminal faces exhibited significantly larger N170 amplitudes than subliminal faces. Moreover, the average N170 amplitude decreased with noise level both for the perceived and the nonperceived faces. At the single-trial level, the N170 amplitude was modulated by conscious recognition, which allowed predicting the subjects' perceptual responses above chance. In contrast, the single-trial N170 amplitudes were not modulated by the amount of noise and the effect found in the average responses was due to different latency jitters, as confirmed with latency-corrected averages. Altogether, these results suggest that conscious face perception is correlated with a boost in the activity of face-selective neural assemblies, whereas the stimulus uncertainty introduced by the added noise decreases the timing consistency (but not the amplitude) of this activation.
当一个面部图像快速呈现在观察者眼前时,在呈现开始后约 170 毫秒,枕颞皮层会产生一个大的负向成分(N170)。先前的研究表明,平均 N170 与有意识的面孔感知有关;然而,这种调制的单trial 机制在很大程度上仍未得到探索。在这里,我们在人类受试者中研究了短暂呈现的面孔的平均和单trial N170 反应,同时结合了后向掩蔽和不同程度的高斯噪声。在平均诱发反应中,我们观察到,在固定的噪声水平下,超阈刺激的面孔比阈下刺激的面孔表现出显著更大的 N170 振幅。此外,平均 N170 振幅随着噪声水平的增加而降低,无论是对于感知到的还是未感知到的面孔都是如此。在单trial 水平上,N170 振幅受到意识识别的调制,这使得可以在机会水平之上预测受试者的感知反应。相比之下,单trial N170 振幅不受噪声量的调制,而在平均反应中发现的效应是由于不同的潜伏期抖动,这一点通过潜伏期校正平均值得到了证实。总之,这些结果表明,有意识的面孔感知与面孔选择性神经集合的活动增强有关,而添加噪声所引入的刺激不确定性会降低这种激活的时间一致性(但不包括振幅)。