Song Inuk, Neal Joshua, Lee Tae-Ho
Department of Psychology, Virginia Tech, Blacksburg, VA 24060, USA.
School of Neuroscience, Virginia Tech, Blacksburg, VA 24060, USA.
Brain Sci. 2021 Nov 10;11(11):1485. doi: 10.3390/brainsci11111485.
The locus coeruleus is critical for selective information processing by modulating the brain's connectivity configuration. Increasingly, studies have suggested that LC controls sensory inputs at the sensory gating stage. Furthermore, accumulating evidence has shown that young children and older adults are more prone to distraction and filter out irrelevant information less efficiently, possibly due to the unoptimized LC connectivity. However, the LC connectivity pattern across the life span is not fully examined yet, hampering our ability to understand the relationship between LC development and the distractibility. In this study, we examined the intrinsic network connectivity of the LC using a public fMRI dataset with wide-range age samples. Based on LC-seed functional connectivity maps, we examined the age-related variation in the LC connectivity with a quadratic model. The analyses revealed two connectivity patterns explicitly. The sensory-related brain regions showed a positive quadratic age effect (u-shape), and the frontal regions for the cognitive control showed a negative quadratic age effect (inverted u-shape). Our results imply that such age-related distractibility is possibly due to the impaired sensory gating by the LC and the insufficient top-down controls by the frontal regions. We discuss the underlying neural mechanisms and limitations of our study.
蓝斑对于通过调节大脑的连接配置来进行选择性信息处理至关重要。越来越多的研究表明,蓝斑在感觉门控阶段控制感觉输入。此外,越来越多的证据表明,幼儿和老年人更容易分心,并且在过滤无关信息方面效率较低,这可能是由于蓝斑连接未优化所致。然而,整个生命周期中蓝斑的连接模式尚未得到充分研究,这阻碍了我们理解蓝斑发育与分心之间关系的能力。在这项研究中,我们使用具有广泛年龄样本的公开功能磁共振成像数据集检查了蓝斑的内在网络连接。基于蓝斑种子功能连接图,我们用二次模型检查了蓝斑连接中与年龄相关的变化。分析明确揭示了两种连接模式。与感觉相关的脑区呈现正二次年龄效应(U形),而用于认知控制的额叶区域呈现负二次年龄效应(倒U形)。我们的结果表明,这种与年龄相关的分心可能是由于蓝斑的感觉门控受损以及额叶区域自上而下的控制不足所致。我们讨论了潜在的神经机制和我们研究的局限性。