MRC Clinical Sciences Centre, Imperial College, Hammersmith Hospital, London W12 0NN, UK.
Cereb Cortex. 2011 Oct;21(10):2307-12. doi: 10.1093/cercor/bhr008. Epub 2011 Mar 2.
Different cortical regions within the ventral occipitotemporal junction have been reported to show preferential responses to particular objects. Thus, it is argued that there is evidence for a left-lateralized visual word form area and a right-lateralized fusiform face area, but the unique specialization of these areas remains controversial. Words are characterized by greater power in the high spatial frequency (SF) range, whereas faces comprise a broader range of high and low frequencies. We investigated how these high-order visual association areas respond to simple sine-wave gratings that varied in SF. Using functional magnetic resonance imaging, we demonstrated lateralization of activity that was concordant with the low-level visual property of words and faces; left occipitotemporal cortex is more strongly activated by high than by low SF gratings, whereas the right occipitotemporal cortex responded more to low than high spatial frequencies. Therefore, the SF of a visual stimulus may bias the lateralization of processing irrespective of its higher order properties.
不同的腹侧枕颞联合的皮质区域被报道对特定物体表现出优先反应。因此,有人认为存在左外侧的视觉单词形式区和右外侧的梭状回面孔区,但这些区域的独特专业化仍然存在争议。单词的特点是在高空间频率(SF)范围内具有更大的功率,而面孔则包含更广泛的高频和低频。我们研究了这些高级视觉联想区域如何对 SF 变化的简单正弦光栅做出反应。使用功能磁共振成像,我们证明了与单词和面孔的低水平视觉特性一致的活动侧化;左枕颞皮质对高 SF 光栅的激活强度高于低 SF 光栅,而右枕颞皮质对低 SF 频率的反应强于高 SF 频率。因此,视觉刺激的 SF 可能会影响处理的侧化,而不考虑其更高阶的特性。