Department of Biology, Centre for Vision Research, York University, Toronto, Ontario, Canada.
Department of Psychology, Vanderbilt University, PMB 407817, 2301 Vanderbilt Place, Nashville, TN, USA.
Cereb Cortex. 2018 Dec 1;28(12):4348-4364. doi: 10.1093/cercor/bhx287.
Population-level theta and beta band activity in anterior cingulate and prefrontal cortices (ACC/PFC) are prominent signatures of self-controlled, adaptive behaviors. But how these rhythmic activities are linked to cell-type specific activity has remained unclear. Here, we suggest such a cell-to-systems level linkage. We found that the rate of burst spiking events is enhanced particularly during attention states and that attention-specific burst spikes have a unique temporal relationship to local theta and beta band population-level activities. For the 5-10 Hz theta frequency range, bursts coincided with transient increases of local theta power relative to nonbursts, particularly for bursts of putative interneurons. For the 16-30 Hz beta frequency, bursts of putative interneurons phase synchronized stronger than nonbursts, and were associated with larger beta power modulation. In contrast, burst of putative pyramidal cells showed similar beta power modulation as nonbursts, but were accompanied by stronger beta power only when they occurred early in the beta cycle. These findings suggest that in the ACC/PFC during attention states, mechanisms underlying burst firing are intimately linked to narrow band population-level activities, providing a cell-type specific window into rhythmic inhibitory gating and the emergence of rhythmically coherent network states during goal directed behavior.
人群水平的前扣带皮层和前额叶皮质(ACC/PFC)中的θ和β波段活动是自我控制、适应性行为的突出特征。但是,这些节律活动与细胞类型特异性活动如何相关仍然不清楚。在这里,我们提出了这样一种从细胞到系统水平的联系。我们发现,爆发性尖峰事件的速率在注意力状态下尤其增强,并且注意力特异性爆发尖峰与局部θ和β波段群体水平活动之间存在独特的时间关系。对于 5-10 Hz 的θ频率范围,爆发与局部θ功率相对于非爆发的短暂增加相对应,特别是对于假定的中间神经元的爆发。对于 16-30 Hz 的β频率,假定的中间神经元的爆发比非爆发更强烈地相位同步,并且与更大的β功率调制相关。相比之下,假定的锥体细胞的爆发与非爆发的β功率调制相似,但只有当它们出现在β周期的早期时,才会伴随着更强的β功率。这些发现表明,在注意力状态下的 ACC/PFC 中,爆发性放电的机制与窄带群体水平活动密切相关,为有节奏的抑制门控和有目的行为期间出现的有节奏的连贯网络状态提供了细胞类型特异性的窗口。