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电微刺激揭示灵长类动物前扣带皮层和外侧前额叶皮层之间的不对称有效连接。

Asymmetric effective connectivity between primate anterior cingulate and lateral prefrontal cortex revealed by electrical microstimulation.

机构信息

Centre for Vision Research, York University, 4700 Keele Street, Toronto, ON, M3J 1P3, Canada.

Department of Psychology, Vanderbilt University, PMB 407817, 2301 Vanderbilt Place, Nashville, TN, 37240-7817, USA.

出版信息

Brain Struct Funct. 2019 Mar;224(2):779-793. doi: 10.1007/s00429-018-1806-y. Epub 2018 Dec 1.

Abstract

The dorsal anterior cingulate cortex (dACC) and lateral prefrontal cortex (lPFC) of the non-human primate show neural firing correlations and synchronize at theta and beta frequencies during the monitoring and shifting of attention. These functional interactions might be based on synaptic connectivity that is equally efficacious in both directions, but it might be that there are systematic asymmetries in connectivity consistent with reports of more effective inhibition within the dACC than lPFC, or with a preponderance of dACC projections synapsing onto inhibitory neurons in the lPFC. Here, we tested effective dACC-lPFC connectivity in awake monkeys and report systematic asymmetries in the temporal patterning and latencies of effective connectivity as measured using electrical microstimulation. We found that dACC stimulation-triggered evoked fields (EFPs) were more likely to be multiphasic in the lPFC than in the reverse direction, with a large proportion of connections showing 2-4 inflection points resembling resonance in the 20-30 Hz beta frequency range. Stimulation of dACC → lPFC resulted, on average, in shorter-latency EFPs than lPFC → dACC. Overall, latencies and connectivity strength varied more than twofold depending on the precise anterior-to-posterior location of the connections. These findings reveal systematic asymmetries in effective connectivity between dACC and lPFC in the awake non-human primate and document the spatial and temporal patchiness of effective synaptic connections. We discuss that our results suggest that measuring effective connectivity profiles will be essential for understanding how asymmetries in local synaptic efficacy and connectivity translate into functional neuronal interactions during adaptive, goal-directed behavior.

摘要

非人类灵长类动物的背侧前扣带皮层(dACC)和外侧前额叶皮层(lPFC)在注意力监测和转移过程中表现出神经放电相关性,并在θ和β频率下同步。这些功能相互作用可能基于突触连接,这种连接在两个方向上同样有效,但也可能存在与 dACC 中抑制作用比 lPFC 更有效或 dACC 投射优先与 lPFC 中的抑制性神经元形成突触相一致的连接的系统不对称性。在这里,我们在清醒的猴子中测试了 dACC-lPFC 的有效连接,并报告了使用电微刺激测量时有效连接的时间模式和潜伏期的系统不对称性。我们发现,与相反方向相比,dACC 刺激引发的诱发电场(EFP)在 lPFC 中更可能是多相的,很大一部分连接显示出 2-4 个拐点,类似于 20-30 Hzβ频带范围内的共振。与 lPFC→dACC 相比,dACC→lPFC 的刺激平均导致潜伏期更短的 EFP。总体而言,潜伏期和连接强度变化超过两倍,具体取决于连接的确切前后位置。这些发现揭示了清醒非人类灵长类动物中 dACC 和 lPFC 之间有效连接的系统不对称性,并记录了有效突触连接的空间和时间不均匀性。我们讨论说,我们的结果表明,测量有效连接谱对于理解局部突触效能和连接的不对称性如何在适应的、有目标的行为中转化为功能性神经元相互作用至关重要。

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