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基底神经节中的多巴胺调节锁定了工作记忆的闸门。

Dopamine modulation in the basal ganglia locks the gate to working memory.

作者信息

Gruber Aaron J, Dayan Peter, Gutkin Boris S, Solla Sara A

机构信息

Biomedical Engineering, Northwestern University, Chicago, IL, USA.

出版信息

J Comput Neurosci. 2006 Apr;20(2):153-66. doi: 10.1007/s10827-005-5705-x. Epub 2006 Apr 22.

Abstract

The prefrontal cortex and basal ganglia are deeply implicated in working memory. Both structures are subject to dopaminergic neuromodulation in a way that exerts a critical influence on the proper operation of working memory. We present a novel network model to elucidate the role of phasic dopamine in the interaction of these two structures in initiating and maintaining mnemonic activity. We argue that neuromodulation plays a critical role in protecting memories against both internal and external sources of noise. Increases in cortical gain engendered by prefrontal dopamine release help make memories robust against external distraction, but do not offer protection against internal noise accompanying recurrent cortical activity. Rather, the output of the basal ganglia provides the gating function of stabilization against noise and distraction by enhancing select memories through targeted disinhibition of cortex. Dopamine in the basal ganglia effectively locks this gate by influencing the stability of up and down states in the striatum. Dopamine's involvement in affective processing endows this gating with specificity to motivational salience. We model a spatial working memory task and show that these combined effects of dopamine lead to superior performance.

摘要

前额叶皮质和基底神经节与工作记忆密切相关。这两个结构都受到多巴胺能神经调节的影响,这种调节方式对工作记忆的正常运作具有关键作用。我们提出了一种新颖的网络模型,以阐明相位多巴胺在这两个结构相互作用中启动和维持记忆活动的作用。我们认为,神经调节在保护记忆免受内部和外部噪声源影响方面起着关键作用。前额叶多巴胺释放引起的皮质增益增加有助于使记忆对外部干扰具有鲁棒性,但不能防止伴随反复皮质活动的内部噪声。相反,基底神经节的输出通过有针对性地解除对皮质的抑制来增强特定记忆,从而提供了针对噪声和干扰的稳定门控功能。基底神经节中的多巴胺通过影响纹状体上下状态的稳定性有效地锁定了这个门。多巴胺参与情感处理赋予了这种门控对动机显著性的特异性。我们对一个空间工作记忆任务进行建模,并表明多巴胺的这些综合作用导致了卓越的表现。

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