Institut für Psychologie, Universität Leipzig, Seeburgstraße 14-20, D-04103 Leipzig, Germany.
Brain Res. 2012 Sep 7;1472:89-98. doi: 10.1016/j.brainres.2012.07.016. Epub 2012 Jul 20.
The automatic processing of deviances from the temporal context of the visual environment has become an important topic in visual cognitive sciences, which is often investigated using the visual mismatch negativity (vMMN). This event-related potential (ERP) component is elicited by an irregular stimulus (e.g., a red disc) presented in a series of stimuli (e.g., green discs) comprising a temporal regularity (e.g., colour repetition). We determined the influence of lower- vs. upper-hemifield presentation of the irregular stimulus on the vMMN while using whole-field stimulus displays controlling for sustained shifts in spatial attention. Deviances presented in the lower hemifield elicited a larger vMMN than the ones presented in the upper hemifield at a latency of 200-280ms. However, this asymmetry was preceded by deviance-related hemifield effects already emerging at an earlier latency (110-150ms), where upper-hemifield deviances elicited a positive potential but lower-hemifield deviances did not. With variable resolution electromagnetic tomography (VARETA) early deviance-related activity was localised to retinotopically organised regions of the visual cortex (BA 17/18) and vMMN-sources were localised to the middle/superior occipital gyrus, to higher areas along the temporal visual stream, but also to BA 17/18. We argue that the upper/lower-hemifield vMMN asymmetry relies at least partially on the hemifield-dependent differential sensitivity of early deviance-related activity generated in retinotopically organised regions of the visual cortex. However, a superior automatic processing of deviances presented in the lower visual hemifield may also contribute to the effect.
视觉环境时间上下文偏差的自动处理已成为视觉认知科学的一个重要课题,通常使用视觉失匹配负波(vMMN)进行研究。这种事件相关电位(ERP)成分是由不规则刺激(例如红色圆盘)在包含时间规则(例如颜色重复)的一系列刺激(例如绿色圆盘)中呈现而产生的。我们确定了在使用全视野刺激显示控制空间注意力持续转移的情况下,不规则刺激的下视野与上视野呈现对 vMMN 的影响。在下视野呈现的偏差比在上视野呈现的偏差在潜伏期 200-280ms 时诱发更大的 vMMN。然而,这种不对称性之前已经出现了与偏差相关的视野效应,这些效应已经在更早的潜伏期(110-150ms)出现,其中上视野偏差诱发正电位,但下视野偏差不诱发。使用可变分辨率电磁断层扫描(VARETA),早期与偏差相关的活动被定位到视觉皮层的视网膜组织区域(BA 17/18),vMMN 源被定位到中/上顶叶回,以及沿着时间视觉流的更高区域,但也定位到 BA 17/18。我们认为,上/下视野 vMMN 不对称至少部分依赖于视觉皮层中视网膜组织区域中产生的早期与偏差相关活动的视野依赖性差异敏感性。然而,下视觉视野中呈现的偏差的自动处理优势也可能对该效应有贡献。