Department of Pharmacology, University of Maryland School of Medicine, BRB 4-011, 655 West Baltimore Street, Baltimore, MD, 21201, USA.
Brain Struct Funct. 2018 Jul;223(6):2999-3006. doi: 10.1007/s00429-018-1661-x. Epub 2018 Apr 6.
The claustrum is a telencephalic gray matter nucleus that is richly interconnected with the neocortex. This structure subserves top-down executive functions that require frontal cortical control of posterior cortical regions. However, functional anatomical support for the claustrum allowing for long-range intercortical communication is lacking. To test this, we performed a channelrhodopsin-assisted long-circuit mapping strategy in mouse brain slices. We find that anterior cingulate cortex input to the claustrum is transiently amplified by claustrum neurons that, in turn, project to parietal association cortex or to primary and secondary visual cortices. Additionally, we observe that claustrum drive of cortical neurons in parietal association cortex is layer-specific, eliciting action potential generation briefly in layers II/III, IV, and VI but not V. These data are the first to provide a functional anatomical substrate through claustrum that may underlie top-down functions, such as executive attention or working memory, providing critical insight to this most interconnected and enigmatic nucleus.
屏状核是富含与新皮质连接的端脑灰质核团,参与自上而下的执行功能,需要额皮质对后皮质区的控制。然而,支持屏状核进行长距离皮质间通讯的功能解剖学基础尚不清楚。为了检验这一点,我们在小鼠脑切片中进行了一种受感蛋白辅助的长回路映射策略。我们发现,扣带前皮质对屏状核的输入被屏状核神经元短暂放大,这些神经元反过来投射到顶叶联合皮质或初级和次级视觉皮质。此外,我们观察到,屏状核对顶叶联合皮质神经元的驱动具有层特异性,在 II/III、IV 和 VI 层中短暂引发动作电位产生,但在 V 层中没有。这些数据首次提供了一个通过屏状核的功能解剖学基础,该基础可能是自上而下的功能的基础,如执行注意或工作记忆,为这个最具相互连接性和神秘性的核团提供了关键的见解。