Rousselet Guillaume A, Ince Robin A A, van Rijsbergen Nicola J, Schyns Philippe G
Institute of Neuroscience and Psychology, University of Glasgow, Glasgow, UK.
J Vis. 2014 Nov 10;14(13):7. doi: 10.1167/14.13.7.
In humans, the N170 event-related potential (ERP) is an integrated measure of cortical activity that varies in amplitude and latency across trials. Researchers often conjecture that N170 variations reflect cortical mechanisms of stimulus coding for recognition. Here, to settle the conjecture and understand cortical information processing mechanisms, we unraveled the coding function of N170 latency and amplitude variations in possibly the simplest socially important natural visual task: face detection. On each experimental trial, 16 observers saw face and noise pictures sparsely sampled with small Gaussian apertures. Reverse-correlation methods coupled with information theory revealed that the presence of the eye specifically covaries with behavioral and neural measurements: the left eye strongly modulates reaction times and lateral electrodes represent mainly the presence of the contralateral eye during the rising part of the N170, with maximum sensitivity before the N170 peak. Furthermore, single-trial N170 latencies code more about the presence of the contralateral eye than N170 amplitudes and early latencies are associated with faster reaction times. The absence of these effects in control images that did not contain a face refutes alternative accounts based on retinal biases or allocation of attention to the eye location on the face. We conclude that the rising part of the N170, roughly 120-170 ms post-stimulus, is a critical time-window in human face processing mechanisms, reflecting predominantly, in a face detection task, the encoding of a single feature: the contralateral eye.
在人类中,N170事件相关电位(ERP)是一种皮质活动的综合测量指标,其幅度和潜伏期在不同试验中会有所变化。研究人员常常推测,N170的变化反映了用于识别的刺激编码的皮质机制。在此,为了验证这一推测并理解皮质信息处理机制,我们在可能是最简单的具有社会重要性的自然视觉任务——面部检测中,揭示了N170潜伏期和幅度变化的编码功能。在每个实验试次中,16名观察者观看用小高斯孔径稀疏采样的面部和噪声图片。反向相关方法与信息论相结合表明,眼睛的存在与行为和神经测量结果存在特定的共变关系:左眼强烈调节反应时间,并且在N170上升期,外侧电极主要代表对侧眼睛的存在,在N170峰值之前具有最大敏感性。此外,单试次N170潜伏期比N170幅度编码了更多关于对侧眼睛存在的信息,并且早期潜伏期与更快的反应时间相关。在不包含面部的对照图像中没有这些效应,这反驳了基于视网膜偏差或对面部眼睛位置的注意力分配的其他解释。我们得出结论,N170的上升期,大约在刺激后120 - 170毫秒,是人类面部处理机制中的一个关键时间窗口,在面部检测任务中主要反映单个特征的编码:对侧眼睛。