Bekisz Marek, Bogdan Wojciech, Ghazaryan Anaida, Waleszczyk Wioletta J, Kublik Ewa, Wróbel Andrzej
Department of Neurophysiology, Nencki Institute of Experimental Biology, Warsaw, Poland.
PLoS One. 2016 Jan 5;11(1):e0145379. doi: 10.1371/journal.pone.0145379. eCollection 2016.
Selective attention can be focused either volitionally, by top-down signals derived from task demands, or automatically, by bottom-up signals from salient stimuli. Because the brain mechanisms that underlie these two attention processes are poorly understood, we recorded local field potentials (LFPs) from primary visual cortical areas of cats as they performed stimulus-driven and anticipatory discrimination tasks. Consistent with our previous observations, in both tasks, we found enhanced beta activity, which we have postulated may serve as an attention carrier. We characterized the functional organization of task-related beta activity by (i) cortical responses (EPs) evoked by electrical stimulation of the optic chiasm and (ii) intracortical LFP correlations. During the anticipatory task, peripheral stimulation that was preceded by high-amplitude beta oscillations evoked large-amplitude EPs compared with EPs that followed low-amplitude beta. In contrast, during the stimulus-driven task, cortical EPs preceded by high-amplitude beta oscillations were, on average, smaller than those preceded by low-amplitude beta. Analysis of the correlations between the different recording sites revealed that beta activation maps were heterogeneous during the bottom-up task and homogeneous for the top-down task. We conclude that bottom-up attention activates cortical visual areas in a mosaic-like pattern, whereas top-down attentional modulation results in spatially homogeneous excitation.
选择性注意可以通过源自任务需求的自上而下信号有意地聚焦,也可以通过来自显著刺激的自下而上信号自动聚焦。由于对这两种注意过程背后的大脑机制了解甚少,我们在猫执行刺激驱动和预期辨别任务时,记录了它们初级视觉皮层区域的局部场电位(LFP)。与我们之前的观察结果一致,在这两项任务中,我们都发现了增强的β活动,我们推测这可能作为一种注意载体。我们通过(i)对视交叉进行电刺激诱发的皮层反应(EP)和(ii)皮层内LFP相关性来表征与任务相关的β活动的功能组织。在预期任务期间,与跟随低振幅β的EP相比,由高振幅β振荡之前的外周刺激诱发的EP振幅更大。相反,在刺激驱动任务期间,由高振幅β振荡之前的皮层EP平均小于由低振幅β之前的EP。对不同记录位点之间相关性的分析表明,在自下而上任务期间β激活图是异质性的,而在自上而下任务中是同质性的。我们得出结论,自下而上的注意以马赛克样模式激活皮层视觉区域,而自上而下的注意调制导致空间上均匀的兴奋。