Wolfson Centre for Clinical and Cognitive Neuroscience and Wales Institute of Cognitive Neuroscience, School of Psychology, Bangor University, Penrallt Road, Gwynedd, LL57 2AS, UK.
Brain Stimul. 2013 Mar;6(2):122-9. doi: 10.1016/j.brs.2012.03.001. Epub 2012 Mar 19.
In tasks that selectively probe visual or spatial working memory (WM) frontal and posterior cortical areas show a segregation, with dorsal areas preferentially involved in spatial (e.g. location) WM and ventral areas in visual (e.g. object identity) WM. In a previous fMRI study [1], we showed that right parietal cortex (PC) was more active during WM for orientation, whereas left inferior frontal gyrus (IFG) was more active during colour WM. During WM for colour-orientation conjunctions, activity in these areas was intermediate to the level of activity for the single task preferred and non-preferred information. To examine whether these specialised areas play a critical role in coordinating visual and spatial WM to perform a conjunction task, we used theta burst transcranial magnetic stimulation (TMS) to induce a functional deficit. Compared to sham stimulation, TMS to right PC or left IFG selectively impaired WM for conjunctions but not single features. This is consistent with findings from visual search paradigms, in which frontal and parietal TMS selectively affects search for conjunctions compared to single features, and with combined TMS and functional imaging work suggesting that parietal and frontal regions are functionally coupled in tasks requiring integration of visual and spatial information. Our results thus elucidate mechanisms by which the brain coordinates spatially segregated processing streams and have implications beyond the field of working memory.
在选择性探测视觉或空间工作记忆 (WM) 的任务中,额皮质和顶后皮质区域表现出分离,背侧区域优先参与空间(例如位置)WM,腹侧区域优先参与视觉(例如物体身份)WM。在之前的 fMRI 研究中[1],我们发现右顶叶皮层 (PC) 在朝向 WM 期间更活跃,而左额下回 (IFG) 在颜色 WM 期间更活跃。在颜色-朝向联合 WM 期间,这些区域的活动处于单一任务首选和非首选信息活动水平的中间。为了研究这些专门区域是否在协调视觉和空间 WM 以执行联合任务中发挥关键作用,我们使用 theta 爆发经颅磁刺激 (TMS) 诱导功能缺陷。与假刺激相比,对右 PC 或左 IFG 的 TMS 选择性地损害了联合但不是单一特征的 WM。这与视觉搜索范式中的发现一致,在视觉搜索范式中,额顶 TMS 选择性地影响了对联合特征的搜索,而不是对单一特征的搜索,并且 TMS 和功能成像的综合工作表明,在需要整合视觉和空间信息的任务中,顶叶和额叶区域在功能上是耦合的。因此,我们的结果阐明了大脑协调空间分离处理流的机制,其影响超出了工作记忆领域。