Institute for Cognitive Neuroscience, Department of Biopsychology, Ruhr-Universität Bochum, Universitätsstrasse 150, D-44780 Bochum, Germany.
Neuropsychologia. 2010 Apr;48(5):1248-54. doi: 10.1016/j.neuropsychologia.2009.12.025. Epub 2009 Dec 22.
Numerous lines of research indicate that attentional processes, working memory and saccadic processes are highly interrelated. In the current study, we examine the relation between these processes with respect to their cognitive-neurophysiological and neurobiological background by means of event-related potentials (ERPs) in a sample of N=72 healthy probands characterized for the functional serotonin receptor 1 A (5-HT1A) C(-1019)G polymorphism. The results support a close interrelation between working memory, attentional and saccadic processes. Yet, these processes are differentially modulated by the 5-HT1A C(-1019)G polymorphism. The 5-HT1A C(-1019)G polymorphism primarily affects attentional processing, whereas processes related to the mental rotation of an object are independent of 5-HT1A genetic variation. It is shown that an increasing number of -1019 G alleles leads to a differential reduction of the N1 above the left and right hemisphere and hence bottom-up attentional processing. In the way increasing numbers of -1019 G alleles lead to a reduction of attentional processes, saccadic activity increases as a similar function of the number of -1019 G alleles. This increase in activity occurs parallel in time to the process of mental rotation. It is hypothesized that decreased attentional processes, dependent on different 5-HT1A C(-1019)G genotypes, may cause parietal networks to increase saccadic activity in order to perform mental rotation.
大量研究表明,注意过程、工作记忆和眼跳过程高度相关。在当前的研究中,我们通过对 72 名健康被试者的事件相关电位(ERPs)研究,检查了这些过程之间的关系,这些被试者的功能性血清素受体 1A(5-HT1A)C(-1019)G 多态性特征明显。结果支持工作记忆、注意力和眼跳过程之间的密切关系。然而,这些过程受到 5-HT1A C(-1019)G 多态性的差异调节。5-HT1A C(-1019)G 多态性主要影响注意力处理,而与物体心理旋转相关的过程则不受 5-HT1A 遗传变异的影响。研究表明,左、右半球上方 N1 的减少与 -1019G 等位基因的增加呈正相关,因此与自上而下的注意力处理有关。随着 -1019G 等位基因数量的增加,眼跳活动也随之增加,这与 -1019G 等位基因的数量呈相似的函数关系。这种活动的增加与心理旋转的过程是同时发生的。研究假设,依赖于不同 5-HT1A C(-1019)G 基因型的注意力过程的降低可能会导致顶叶网络增加眼跳活动,以完成心理旋转。