School of Psychology, Georgia Institute of Technology, Atlanta, GA 30332.
School of Psychology, Georgia Institute of Technology, Atlanta, GA 30332
Proc Natl Acad Sci U S A. 2021 Nov 16;118(46). doi: 10.1073/pnas.2110630118.
The last decade has seen significant progress identifying genetic and brain differences related to intelligence. However, there remain considerable gaps in our understanding of how cognitive mechanisms that underpin intelligence map onto various brain functions. In this article, we argue that the locus coeruleus-norepinephrine system is essential for understanding the biological basis of intelligence. We review evidence suggesting that the locus coeruleus-norepinephrine system plays a central role at all levels of brain function, from metabolic processes to the organization of large-scale brain networks. We connect this evidence with our executive attention view of working-memory capacity and fluid intelligence and present analyses on baseline pupil size, an indicator of locus coeruleus activity. Using a latent variable approach, our analyses showed that a common executive attention factor predicted baseline pupil size. Additionally, the executive attention function of disengagement--not maintenance--uniquely predicted baseline pupil size. These findings suggest that the ability to control attention may be important for understanding how cognitive mechanisms of fluid intelligence map onto the locus coeruleus-norepinephrine system. We discuss how further research is needed to better understand the relationships between fluid intelligence, the locus coeruleus-norepinephrine system, and functionally organized brain networks.
在过去的十年中,人们在识别与智力相关的遗传和大脑差异方面取得了重大进展。然而,我们对于支撑智力的认知机制如何映射到各种大脑功能方面的理解仍存在很大差距。在本文中,我们认为蓝斑-去甲肾上腺素系统对于理解智力的生物学基础至关重要。我们回顾了一些证据,这些证据表明蓝斑-去甲肾上腺素系统在大脑功能的各个层面都起着核心作用,从代谢过程到大规模脑网络的组织。我们将这些证据与我们的执行注意工作记忆容量和流体智力观点联系起来,并对瞳孔大小的基线进行了分析,这是蓝斑活动的一个指标。使用潜在变量方法,我们的分析表明,一个共同的执行注意因素可以预测瞳孔大小的基线。此外,脱离注意的执行注意功能——而不是维持注意的功能——可以独特地预测瞳孔大小的基线。这些发现表明,控制注意力的能力对于理解流体智力的认知机制如何映射到蓝斑-去甲肾上腺素系统可能很重要。我们讨论了需要进一步研究以更好地理解流体智力、蓝斑-去甲肾上腺素系统和功能组织化脑网络之间的关系。