Wilson Tony W, Leuthold Arthur C, Lewis Scott M, Georgopoulos Apostolos P, Pardo Patricia J
Brain Sciences Center, Veterans Affairs Medical Center, One Veterans Drive, Minneapolis, MN 55417, USA.
Exp Brain Res. 2005 Nov;167(2):141-7. doi: 10.1007/s00221-005-0011-4. Epub 2005 Nov 15.
Previous research documented letter-string specific cortices in the ventral visual stream near the left occipitotemporal junction (i.e., anterior fusiform gyrus). These neural areas potentially code the perceptual elements comprising orthographic stimuli, and thus function as feature detectors in high-level vision. While abundant evidence supports this region's role in detecting isomorphic perceptual features, any influence cognitive dimensions (e.g., the lexicality of letter-strings) may play in modulating this area's processing remains an open question. To investigate this, we examined the spatiotemporal dynamics of high-density magnetoencephalographic signals, recorded as subjects completed a rhyme-judgment task on stimuli varying in the cognitive property of lexicality. Our data demonstrate that the time course of occipitotemporal cortices discriminates cognitive attributes of orthographic stimuli. The dynamics in this brain region may indicate interactive processes unfolding later in the time course, when more anterior fronto-temporal circuits are activated by semantic correlates of real words.
先前的研究记录了左枕颞交界处(即前梭状回)附近腹侧视觉通路中特定于字母串的皮层。这些神经区域可能对构成正字法刺激的感知元素进行编码,因此在高级视觉中充当特征检测器。虽然大量证据支持该区域在检测同构感知特征方面的作用,但认知维度(例如字母串的词汇性)在调节该区域处理过程中可能发挥的任何影响仍是一个悬而未决的问题。为了对此进行研究,我们检查了高密度脑磁图信号的时空动态,这些信号是在受试者对词汇性认知属性不同的刺激完成押韵判断任务时记录的。我们的数据表明,枕颞叶皮层的时间进程能够区分正字法刺激的认知属性。当真实单词的语义关联激活更多靠前的额颞叶回路时,该脑区的动态变化可能表明在时间进程后期展开的交互过程。