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皮层网络模型中语义启动的多巴胺能神经调节

Dopaminergic neuromodulation of semantic priming in a cortical network model.

作者信息

Lavigne Frédéric, Darmon Nelly

机构信息

Laboratoire de Psychologie Cognitive et Sociale, EA1189, Université de Nice-Sophia Antipolis, 24 avenue des diables bleus, 06357 Nice Cedex 4, France.

出版信息

Neuropsychologia. 2008 Nov;46(13):3074-87. doi: 10.1016/j.neuropsychologia.2008.06.019. Epub 2008 Jul 5.

Abstract

Semantic priming between items stored and associated in memory underlies contextual recall. Response times to process a given target item are shorter when following presentation of a related prime item than when it is unrelated. The study of priming effects allows investigating the structure of semantic networks as a function of association strength and number of links relating the prime and target. Behavioral data from divided visual field experiments in healthy subjects show a variability in the magnitude of priming effects when the left or right hemisphere is primary involved. Data from schizophrenic patients also exhibit variability in priming magnitude compared to data from healthy subjects. Mathematical models of cortical networks allow theorists to understand the link between the physiology of single neurons and synapses and network behavior. Computational modelling can replicate electrophysiological recordings of cortical neurons in monkeys, that exhibit two types of task-related activity, 'retrospective' (related to a previously shown stimulus) and 'prospective' (related to a stimulus expected to appear, due to learned association between both stimuli). Experimental studies of associative priming report priming effects on behavioral data in both human and monkeys. Cortical network models can account for a large variety of priming effects observed in human, and for the dependence of retrospective activity on dopamine neuromodulation. Here, we investigate how variable levels of dopamine in a model of a cortical network can modulate prospective activity to vary the magnitude of semantic priming. We simulate a biologically realistic network of integrate and fire neurons to study the effects of dopaminergic neuromodulation of NMDA receptors of glutamatergic and gabaergic neurons on semantic priming dynamics. Results support the possibility that different levels of dopaminergic neuromodulation can subtend hemispheric differences in semantic priming, corresponding to focused priming in the left hemisphere and to extended priming in the right hemisphere. Furthermore, results can account for priming perturbations in schizophrenia depending on the level of dopamine.

摘要

存储于记忆中并相互关联的项目之间的语义启动是情境回忆的基础。当呈现相关的启动项目后,处理给定目标项目的反应时间比呈现不相关项目时要短。对启动效应的研究有助于探究语义网络的结构,该结构是关联强度以及连接启动项目和目标项目的链接数量的函数。健康受试者的分视野实验的行为数据表明,当左半球或右半球为主导参与时,启动效应的大小存在差异。与健康受试者的数据相比,精神分裂症患者的数据在启动大小方面也表现出差异。皮层网络的数学模型使理论家能够理解单个神经元和突触的生理学与网络行为之间的联系。计算建模可以复制猴子皮层神经元的电生理记录,这些记录表现出两种与任务相关的活动,即“回顾性”(与先前呈现的刺激有关)和“前瞻性”(与预期出现的刺激有关,这是由于两种刺激之间的学习关联)。联想启动的实验研究报告了在人类和猴子的行为数据上的启动效应。皮层网络模型可以解释在人类中观察到的多种启动效应,以及回顾性活动对多巴胺神经调节的依赖性。在这里,我们研究皮层网络模型中不同水平的多巴胺如何调节前瞻性活动以改变语义启动的大小。我们模拟了一个具有生物真实性的积分发放神经元网络,以研究谷氨酸能和γ-氨基丁酸能神经元的NMDA受体的多巴胺能神经调节对语义启动动力学的影响。结果支持这样一种可能性,即不同水平的多巴胺能神经调节可能导致语义启动的半球差异,对应于左半球的聚焦启动和右半球的扩展启动。此外,结果可以解释精神分裂症中取决于多巴胺水平的启动扰动。

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