Institut d'Alta Tecnologia-PRBB, CRC Mar, Hospital del Mar, Barcelona, Spain.
PLoS One. 2011;6(7):e22964. doi: 10.1371/journal.pone.0022964. Epub 2011 Jul 29.
Activity decreases, or deactivations, of midline and parietal cortical brain regions are routinely observed in human functional neuroimaging studies that compare periods of task-based cognitive performance with passive states, such as rest. It is now widely held that such task-induced deactivations index a highly organized 'default-mode network' (DMN): a large-scale brain system whose discovery has had broad implications in the study of human brain function and behavior. In this work, we show that common task-induced deactivations from rest also occur outside of the DMN as a function of increased task demand. Fifty healthy adult subjects performed two distinct functional magnetic resonance imaging tasks that were designed to reliably map deactivations from a resting baseline. As primary findings, increases in task demand consistently modulated the regional anatomy of DMN deactivation. At high levels of task demand, robust deactivation was observed in non-DMN regions, most notably, the posterior insular cortex. Deactivation of this region was directly implicated in a performance-based analysis of experienced task difficulty. Together, these findings suggest that task-induced deactivations from rest are not limited to the DMN and extend to brain regions typically associated with integrative sensory and interoceptive processes.
在将基于任务的认知表现与被动状态(如休息)进行比较的人类功能神经影像学研究中,通常会观察到中线和顶叶皮质脑区的活动减少或去激活。现在人们普遍认为,这种任务引起的去激活反映了一个高度组织化的“默认模式网络”(DMN):一个大规模的脑系统,它的发现对人类大脑功能和行为的研究具有广泛的影响。在这项工作中,我们表明,常见的任务引起的去激活也会随着任务需求的增加而在 DMN 之外发生。五十名健康成年受试者进行了两项不同的功能磁共振成像任务,这些任务旨在可靠地从休息基线映射去激活。作为主要发现,任务需求的增加一致地调节了 DMN 去激活的区域解剖结构。在高任务需求水平下,在后岛叶皮层等非 DMN 区域观察到强烈的去激活。该区域的去激活直接涉及到对经验任务难度的基于表现的分析。总之,这些发现表明,从休息中引起的任务诱导去激活不仅限于 DMN,并扩展到与综合感觉和内脏感觉过程相关的大脑区域。