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P300的神经生理学——综合综述

The neurophysiology of P 300--an integrated review.

作者信息

Huang W-J, Chen W-W, Zhang X

机构信息

Department of Neurology, Xuzhou Central Hospital, Xuzhou, Jiangsu, China.

出版信息

Eur Rev Med Pharmacol Sci. 2015 Apr;19(8):1480-8.

Abstract

Event-related potentials (ERPs) are very small voltages recorded from the scalp which originate in the brain structures in response to specific events or stimuli. They appear as a series of peaks and troughs interspersed in the Electroencephalogram (EEG) waves. The exact neural origins and neuropsychological meaning of the P300 are imprecisely known, even though appreciable progress has been made in the last 25 years. In this review, we will focus on the possible neural generators of this potential. Given the attention and memory operations associated with P300 generation, the first human studies on the neural origins of this ERP focused on the hippocampal formation using depth electrodes implanted to assess sources of epileptic foci in patients. Other lesion studies have found that the integrity of the temporal-parietal lobe junction is involved with either generation or transmission processes subsequent to hippocampal activity and contributes to ERP measures. These findings imply that hippocampal absence does not eliminate the P300, but that the temporal-parietal junction does affect its production. As mentioned till now, the neuroelectric events that underlie P300 generation stem from the interaction between frontal lobe and hippocampal/temporal-parietal function. ERP and fMRI studies using oddball tasks have obtained patterns consistent with this frontal-to-temporal and parietal lobe activation pattern. Further support comes from magnetic resonance imaging (MRI) of gray matter volumes that suggest individual variation in P3a amplitude from distracter stimuli is correlated with frontal lobe area size, whereas P3b amplitude from target stimuli is correlated with parietal area size. Given distinct neuropsychological correlates for P3a and P3b, different neurotransmitters may be engaged for each constituent subcomponent under specific stimulus/task processing requirements. Available data suggest that dopaminergic/frontal processes for P3a and locus-coeruleus-norepinephrine/ parietal activity for P3b are reasonable to propose. This dual-transmitter P300 hypothesis is speculative but appears to account for a variety of findings and provides a useful framework for evaluating drug effects.

摘要

事件相关电位(ERP)是从头皮记录到的非常小的电压,它起源于大脑结构,是对特定事件或刺激的反应。它们表现为一系列穿插在脑电图(EEG)波中的峰和谷。尽管在过去25年里已经取得了显著进展,但P300的确切神经起源和神经心理学意义仍不明确。在这篇综述中,我们将聚焦于这种电位可能的神经发生器。鉴于与P300产生相关的注意力和记忆操作,关于这种ERP神经起源的首批人体研究使用植入深度电极来评估患者癫痫病灶的来源,聚焦于海马结构。其他损伤研究发现,颞顶叶交界处的完整性与海马活动后的产生或传递过程有关,并有助于ERP测量。这些发现意味着海马缺失并不会消除P300,但颞顶叶交界处确实会影响其产生。到目前为止所提到的,P300产生背后的神经电事件源于额叶与海马/颞顶叶功能之间的相互作用。使用oddball任务的ERP和功能磁共振成像(fMRI)研究已经获得了与这种从额叶到颞叶和顶叶的激活模式一致的模式。进一步的支持来自灰质体积的磁共振成像(MRI),其表明来自分心刺激的P3a振幅的个体差异与额叶面积大小相关,而来自目标刺激的P3b振幅与顶叶面积大小相关。鉴于P3a和P3b有不同的神经心理学关联,在特定的刺激/任务处理要求下,每种成分子成分可能涉及不同的神经递质。现有数据表明,提出P3a的多巴胺能/额叶过程和P3b的蓝斑去甲肾上腺素/顶叶活动是合理的。这种双递质P300假说具有推测性,但似乎可以解释各种发现,并为评估药物作用提供了一个有用的框架。

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