Cognitive Neurophysiology, Department of Child and Adolescent Psychiatry, Faculty of Medicine, TU Dresden, Schubertstrasse 42, 01309, Dresden, Germany.
Experimental Neurobiology, National Institute of Mental Health, Klecany, Czech Republic.
Mol Neurobiol. 2018 Mar;55(3):2268-2274. doi: 10.1007/s12035-017-0485-7. Epub 2017 Mar 21.
Cognitive control processes play an essential role not only in controlling actions but also in guiding attentional selection processes. Interestingly, these processes are strongly affected by organizational principles of the cerebral cortex and related functional asymmetries, but the neurobiological foundations are elusive. We ask whether neurobiological mechanisms that affect functional cerebral asymmetries will also modulate effects of top-down control processes on functional cerebral asymmetries. To this end, we examined potential effects of the imprinted gene leucine-rich repeat transmembrane neuronal 1 (LRRTM1) on attentional biasing processes in a forced attention dichotic listening task in 983 healthy adult participants of Caucasian descent using the "iDichotic smartphone app." The results show that functional cerebral asymmetries in the language domain are associated with the rs6733871 LRRTM1 polymorphism when cognitive control and top-down attentional mechanisms modulate processes in bottom-up attentional selection processes that are dependent on functional cerebral asymmetries. There is no evidence for an effect of LRRTM1 on functional cerebral asymmetries in the language domain unrelated to cognitive control processes. The results suggest that cognitive control processes are an important factor to consider when being interested in the molecular genetic basis of functional cerebral architecture.
认知控制过程不仅在控制动作方面起着至关重要的作用,而且在引导注意力选择过程中也起着至关重要的作用。有趣的是,这些过程受到大脑皮层的组织原则和相关功能不对称的强烈影响,但神经生物学基础却难以捉摸。我们想知道,影响功能性大脑不对称的神经生物学机制是否也会调节自上而下的控制过程对功能性大脑不对称的影响。为此,我们使用“iDichotic 智能手机应用程序”,在 983 名白种人健康成年参与者的强制性注意二分听任务中,检查了影响注意力偏向过程的印记基因亮氨酸丰富的重复跨膜神经元 1(LRRTM1)的潜在影响。结果表明,当认知控制和自上而下的注意力机制调节依赖于功能性大脑不对称的下传注意力选择过程中的过程时,语言域中的功能性大脑不对称与 rs6733871LRRTM1 多态性相关。没有证据表明 LRRTM1 对与认知控制过程无关的语言域中的功能性大脑不对称有影响。结果表明,认知控制过程是在关注功能性大脑结构的分子遗传基础时需要考虑的一个重要因素。