Jeffreys D A
Communication and Neuroscience Department, Keele University, Staffs., UK.
Exp Brain Res. 1993;96(1):163-72. doi: 10.1007/BF00230449.
The scalp-recorded "vertex-positive peak" (VPP) evoked by images of faces in humans has previously been shown to be delayed when an originally upright stimulus is inverted or rotated by 90 degrees (Jeffreys 1989a). This paper describes a study of the effects on this scalp potential of smaller face orientation changes (15 degrees increments). The results showed that, under normal viewing conditions of clearly defined facial images, the VPP latency, which was minimal for face orientations within 15 degrees of the vertical (0 degree), increased almost linearly for incremental rotations from 15 up to 90 degrees, but was relatively unchanged or decreased slightly for further rotations from 90 up to 180 degrees. Similar results were observed for clockwise and anticlockwise rotations, and for different facial representations. These stimulus orientation changes did not change the latency of simultaneously recorded, pattern-specific potentials recorded from occipital scalp locations; nor did they greatly affect the VPP amplitude. By contrast, rotations of "Mooney figure" stimuli away from the vertical produced concurrent reductions in both the perception of a face and the amplitude of the evoked VPP. Experiments in which the orientation of both the stimulus face and the subject's head were varied further showed that minimal latency VPP responses were evoked for parallel stimulus and viewing orientations. The speed of response is thus determined by the orientation of the subtended retinal image.
先前的研究表明,当原本直立的人脸图像被倒置或旋转90度时,人类头皮记录的由人脸图像诱发的“头顶正峰”(VPP)会延迟(杰弗里斯,1989a)。本文描述了一项关于较小角度的人脸方向变化(以15度递增)对这种头皮电位影响的研究。结果显示,在清晰定义的面部图像的正常观察条件下,对于垂直方向(0度)左右15度范围内的人脸方向,VPP潜伏期最短,从15度到90度的递增旋转过程中,VPP潜伏期几乎呈线性增加,但从90度到180度的进一步旋转时,潜伏期相对不变或略有下降。顺时针和逆时针旋转以及不同的面部表现形式都观察到了类似结果。这些刺激方向的变化并没有改变同时记录的枕部头皮位置的模式特异性电位的潜伏期;也没有对VPP波幅产生很大影响。相比之下,“穆尼图形”刺激从垂直方向旋转会导致对面部的感知和诱发的VPP波幅同时降低。进一步改变刺激人脸和受试者头部方向的实验表明,当刺激和观察方向平行时,会诱发潜伏期最短的VPP反应。因此,反应速度由所对视网膜图像的方向决定。