Neuroscience and Mental Health Institute, University of Alberta, Edmonton, AB, Canada.
Department of Psychiatry, University of Alberta, Edmonton, AB, Canada.
Commun Biol. 2024 Nov 22;7(1):1556. doi: 10.1038/s42003-024-07256-5.
This study delves into the claustrum's role in modulating spontaneous and sensory-evoked network activity across cortical regions. Using mesoscale calcium imaging and Gi and Gq DREADDs in anesthetized mice, we show that decreasing claustral activity enhances prefrontal cortical activity, while activation reduces prefrontal cortical activity. This claustrum modulation also caused changes to the brain's large-scale functional networks, emphasizing the claustrum's ability to influence long-range functional connectivity in the cortex. Claustrum inhibition increased the local coupling between frontal cortex areas, but reduced the correlation between anterior medial regions and lateral/posterior regions, while also enhancing sensory-evoked responses in the visual cortex. These findings indicate the claustrum can participate in orchestrating neural communication across cortical regions through modulation of prefrontal cortical activity. These insights deepen our understanding of the claustrum's impact on prefrontal connectivity, large-scale network dynamics, and sensory processing, positioning the claustrum as a key node modulating large-scale cortical dynamics.
本研究深入探讨了屏状核在调节跨皮质区域的自发性和感觉诱发网络活动中的作用。使用麻醉小鼠中的介观钙成像和 Gi 和 Gq DREADD,我们表明降低屏状核活性增强前额叶皮质活动,而激活则降低前额叶皮质活动。这种屏状核调节还导致大脑的大规模功能网络发生变化,强调了屏状核影响皮质中长程功能连接的能力。屏状核抑制增加了额皮质区域之间的局部耦合,但降低了前内侧区域与外侧/后区域之间的相关性,同时还增强了视觉皮层的感觉诱发反应。这些发现表明,屏状核可以通过调节前额叶皮质活动来参与协调跨皮质区域的神经通讯。这些见解加深了我们对屏状核对前额叶连接、大规模网络动态和感觉处理的影响的理解,使屏状核成为调节大规模皮质动态的关键节点。