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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Destruction and creation of spatial tuning by disinhibition: GABA(A) blockade of prefrontal cortical neurons engaged by working memory.
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Destruction and creation of spatial tuning by disinhibition: GABA(A) blockade of prefrontal cortical neurons engaged by working memory.

机译:通过去抑制作用破坏和创造空间调节作用:GABA(A)阻断前额叶皮层神经元的工作记忆参与。

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Local circuit neurons in the dorsolateral prefrontal cortex (dPFC) of monkeys have been implicated in the cellular basis of working memory. To further elucidate the role of inhibition in spatial tuning, we iontophoresed bicuculline methiodide (BMI) onto functionally characterized neurons in the dPFC of monkeys performing an oculomotor delayed response task. This GABA(A) blockade revealed that both putative interneurons and pyramidal cells possess significant inhibitory tone in the awake, behaving monkey. In addition, BMI application primarily resulted in the loss of previously extant spatial tuning in both cell types through reduction of both isodirectional and cross-directional inhibition. This tuning loss occurred in both the sensorimotor and mnemonic phases of the task, although the delay activity of prefrontal neurons appeared to be particularly affected. Finally, application of BMI also created significant spatial tuning in a sizable minority of units that were untuned in the control condition. Visual field analysis of such tuning suggests that it is likely caused by the unmasking of normally suppressed spatially tuned excitatory input. These findings provide the first direct evidence of directional inhibitory modulation of pyramidal cell and interneuron firing in both the mnemonic and sensorimotor phases of the working memory process, and they implicate a further role for GABAergic interneurons in the construction of spatial tuning in prefrontal cortex.
机译:猴子的背外侧前额叶皮层(dPFC)中的局部回路神经元已牵涉到工作记忆的细胞基础。为了进一步阐明抑制作用在空间调节中的作用,我们将双小分子甲硫氨酸(BMI)离子电渗入了执行动眼延迟反应任务的猴子dPFC中功能性表征的神经元上。这种GABA(A)阻断作用表明,假定的中枢神经元和锥体细胞在清醒,表现良好的猴子中均具有明显的抑制音。此外,BMI的应用主要通过减少同向和横向抑制作用,导致两种细胞类型都失去了先前存在的空间调节能力。尽管前额神经元的延迟活动似乎受到了特别的影响,但是这种调节损失发生在任务的感觉运动和助记忆阶段。最后,BMI的应用还为在控制条件下未调整的相当数量的少数设备创造了显着的空间调整。此类调整的视野分析表明,这很可能是由通常抑制的空间调整的激励输入的未屏蔽引起的。这些发现为在工作记忆过程的记忆和感觉运动阶段锥体细胞和中间神经元放电的方向性抑制性调节提供了直接的直接证据,并且它们暗示了GABA能中间神经元在前额叶皮层空间调节的构建中的进一步作用。

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