Smith Anna B, Taylor Eric, Brammer Mick, Rubia Katya
Department of Child Psychiatry, Institute of Psychiatry, King's College London, London, United Kingdom.
Hum Brain Mapp. 2004 Apr;21(4):247-56. doi: 10.1002/hbm.20007.
Attentional switching has shown to involve several prefrontal and parietal brain regions. Most cognitive paradigms used to measure cognitive switching such as the Wisconsin Card Sorting Task (WCST) involve additional cognitive processes besides switching, in particular working memory (WM). It is, therefore, questionable whether prefrontal brain regions activated in these conditions, especially dorsolateral prefrontal cortex (DLPFC), are involved in cognitive switching per se, or are related to WM components involved in switching tasks. Functional magnetic resonance imaging (fMRI) was used to examine neural correlates of pure switching using a paradigm purposely designed to minimize WM functions. The switching paradigm required subjects to switch unpredictably between two spatial dimensions, clearly indicated throughout the task before each trial. Fast, event-related fMRI was used to compare neural activation associated with switch trials to that related to repeat trials in 20 healthy, right-handed, adult males. A large cluster of activation was observed in the right hemisphere, extending from inferior prefrontal and pre- and postcentral gyri to superior temporal and inferior parietal cortices. A smaller and more caudal cluster of homologous activation in the left hemisphere was accompanied by activation of left dorsolateral prefrontal cortex (DLPFC). We conclude that left DLPFC activation is involved directly in cognitive switching, in conjunction with parietal and temporal brain regions. Pre- and postcentral gyrus activation may be related to motor components of switching set.
注意力转换已被证明涉及多个前额叶和顶叶脑区。大多数用于测量认知转换的认知范式,如威斯康星卡片分类任务(WCST),除了转换之外还涉及其他认知过程,特别是工作记忆(WM)。因此,在这些情况下激活的前额叶脑区,尤其是背外侧前额叶皮层(DLPFC),是本身参与认知转换,还是与转换任务中涉及的工作记忆成分有关,这是值得怀疑的。功能磁共振成像(fMRI)被用于使用专门设计以最小化工作记忆功能的范式来检查纯转换的神经相关性。转换范式要求受试者在两个空间维度之间不可预测地转换,在每次试验之前在整个任务中都有明确指示。使用快速事件相关fMRI来比较20名健康的右利手成年男性中与转换试验相关的神经激活和与重复试验相关的神经激活。在右半球观察到一大簇激活,从额下回、中央前回和中央后回延伸到颞上回和顶下小叶。在左半球较小且更靠尾侧的同源激活簇伴随着左背外侧前额叶皮层(DLPFC)的激活。我们得出结论,左背外侧前额叶皮层激活与顶叶和颞叶脑区一起直接参与认知转换。中央前回和中央后回的激活可能与转换定势的运动成分有关。