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首页> 外文期刊>Journal of Cognitive Neuroscience >Both a Nicotinic Single Nucleotide Polymorphism (SNP) and a Noradrenergic SNP Modulate Working Memory Performance when Attention is Manipulated
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Both a Nicotinic Single Nucleotide Polymorphism (SNP) and a Noradrenergic SNP Modulate Working Memory Performance when Attention is Manipulated

机译:操纵注意力时,烟碱单核苷酸多态性(SNP)和去甲肾上腺素能SNP均可调节工作记忆性能。

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摘要

We investigated the relation between the two systems of visuospatial attention and working memory by examining the effect of normal variation in cholinergic and noradrenergic genes on working memory performance under attentional manipulation. We previously reported that working memory for location was impaired following large location precues, indicating the scale of visuospatial attention has a role in forming the mental representation of the target. In one of the first studies to compare effects of two single nucleotide polymorphisms (SNPs) on the same cognitive task, we investigated the neurotransmission systems underlying interactions between attention and memory. Based on our previous report that the CHRNA4 rs#l(M4396 C/T nicotinic receptor SNP affected visuospatial attention, but not working memory, and the DBH rs# 1108580 G/A noradrenergic enzyme SNP affected working memory, but not attention, we predicted that both SNPs would modulate performance when the two systems interacted and working memory was manipulated by attention. We found the scale of visuospatial attention deployed around a target affected memory for location of that target. Memory performance was modulated by the two SNPs. CHRNA4 C/C homozygotes and DBH G allele carriers showed the best memory performance but also the greatest benefit of visuospatial attention on memory. Overall, however, the CHRNA4 SNP exerted a stronger effect than the DBH SNP on memory performance when visuospatial attention was manipulated. This evidence of an integrated cholinergic influence on working memoiy performance under attentional manipulation is consistent with the view that working memory and visuospatial attention are separate systems which can interact.
机译:我们通过检查胆碱能和去甲肾上腺素能基因的正常变异对注意力操纵下工作记忆性能的影响,研究了视觉空间注意力和工作记忆这两个系统之间的关系。我们先前曾报道过,大的位置提示会削弱位置的工作记忆,这表明视觉空间注意的规模在形成目标的心理表征中起作用。在比较两个单核苷酸多态性(SNP)对同一认知任务的影响的首批研究之一中,我们研究了注意力与记忆之间相互作用的神经传递系统。根据我们先前的报道,CHRNA4 rs#1(M4396 C / T烟碱受体SNP影响视觉空间注意力,但不影响工作记忆,而DBH rs#1108580 G / A去甲肾上腺素酶SNP影响工作记忆,但不关注,我们预测当两个系统相互作用并且通过注意力操纵工作记忆时,这两个SNP都会调节性能。我们发现在靶标周围部署了视觉空间注意力的规模影响了该目标的位置,记忆性能是由两个SNP调节的。 C纯合子和DBH G等位基因携带者表现出最佳的记忆性能,但对视觉记忆的最大好处也是最大的,但是总体上讲,当操纵视觉空间注意力时,CHRNA4 SNP的表现比DBH SNP表现出更强的作用。在注意力操纵下对工作记忆表现的综合胆碱能影响与以下观点一致:工作记忆和视觉空间注意力是可以交互的独立系统。

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