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柱形处理在灵长类 pFC 中的作用:执行控制微电路的证据。

Columnar processing in primate pFC: evidence for executive control microcircuits.

机构信息

Wake Forest School of Medicine, Winston-Salem, NC 27157, USA.

出版信息

J Cogn Neurosci. 2012 Dec;24(12):2334-47. doi: 10.1162/jocn_a_00307. Epub 2012 Sep 27.

Abstract

A common denominator for many cognitive disorders of human brain is the disruption of neural activity within pFC, whose structural basis is primarily interlaminar (columnar) microcircuits or "minicolumns." The importance of this brain region for executive decision-making has been well documented; however, because of technological constraints, the minicolumnar basis is not well understood. Here, via implementation of a unique conformal multielectrode recording array, the role of interlaminar pFC minicolumns in the executive control of task-related target selection is demonstrated in nonhuman primates performing a visuomotor DMS task. The results reveal target-specific, interlaminar correlated firing during the decision phase of the trial between multielectrode recording array-isolated minicolumnar pairs of neurons located in parallel in layers 2/3 and layer 5 of pFC. The functional significance of individual pFC minicolumns (separated by 40 μm) was shown by reduced correlated firing between cell pairs within single minicolumns on error trials with inappropriate target selection. To further demonstrate dependence on performance, a task-disrupting drug (cocaine) was administered in the middle of the session, which also reduced interlaminar firing in minicolumns that fired appropriately in the early (nondrug) portion of the session. The results provide a direct demonstration of task-specific, real-time columnar processing in pFC indicating the role of this type of microcircuit in executive control of decision-making in primate brain.

摘要

许多人类大脑认知障碍的一个共同特征是前额叶皮层(pFC)内神经活动的中断,其结构基础主要是层间(柱状)微电路或“小柱”。该脑区在执行决策方面的重要性已得到充分证明;然而,由于技术限制,小柱的基础仍未得到很好的理解。在这里,通过实施独特的共形多电极记录阵列,在执行视觉运动 DMS 任务的非人类灵长类动物中,证明了 pFC 层间小柱在与任务相关的目标选择的执行控制中的作用。结果显示,在试验的决策阶段,位于 pFC 第 2/3 层和第 5 层中平行的多电极记录阵列隔离的小柱对神经元之间存在特定于目标的层间相关放电。通过在错误试验中,与不适当的目标选择相关的单个小柱内细胞对之间的相关放电减少,显示了单个 pFC 小柱(间隔 40μm)的功能意义。为了进一步证明依赖于性能,在会话中间给予一种会破坏任务的药物(可卡因),这也会降低在会话早期(无药物)部分适当放电的小柱中的层间放电。结果提供了 pFC 中特定于任务的实时柱状处理的直接证明,表明这种微电路类型在灵长类大脑决策的执行控制中的作用。

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