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反馈刺激之前的刺激前负波(SPN)的时空偶极子模型。

A spatiotemporal dipole model of the stimulus preceding negativity (SPN) prior to feedback stimuli.

作者信息

Böcker K B, Brunia C H, van den Berg-Lenssen M M

机构信息

Co-operation Centre Tilburg and Eindhoven Universities, The Netherlands.

出版信息

Brain Topogr. 1994 Fall;7(1):71-88. doi: 10.1007/BF01184839.

Abstract

Ten subjects performed a time production task, in which they were instructed to press a button four seconds after the presentation of an auditory stimulus. Two seconds after the button press they received either auditory or visual feedback on the temporal accuracy of their response. In such a paradigm negative slow brain potentials can be recorded preceding the response (Movement Preceding Negativity, MPN) as well as preceding the feedback stimulus (Stimulus Preceding Negativity, SPN). Spatiotemporal dipole modelling is used to gain insight in the possible generators of MPN and SPN. From the models it follows that the MPN can be described by one contralateral radial dipole and a bilateral pair of tangential dipoles. All three dipoles are located near central electrode positions, so the generators of the MPN probably reside within the motor cortex. The SPN is modelled by a bilateral frontotemporal pair of dipoles, hypothetically representing activation of the Insulae Reili. The insular cortex is involved in the processing of affective-motivational input, such as carried by the feedback in the present paradigm. However, processing of the information content of the feedback stimulus might by itself also activate the frontal cortex. Both the response and the feedback stimulus are followed by a positive peak, which can be described by the same deep posterior dipole. Both peaks probably represent a P3, which is related to context updating.

摘要

十名受试者执行了一项时间生成任务,在该任务中,他们被要求在听觉刺激呈现后四秒按下一个按钮。在按下按钮两秒后,他们会收到关于其反应时间准确性的听觉或视觉反馈。在这样的范式中,可以在反应之前记录到负性慢脑电位(运动前负波,MPN)以及在反馈刺激之前记录到(刺激前负波,SPN)。时空偶极子建模用于深入了解MPN和SPN可能的产生源。从模型中可以看出,MPN可以由一个对侧径向偶极子和一对双侧切向偶极子来描述。所有这三个偶极子都位于中央电极位置附近,因此MPN的产生源可能位于运动皮层内。SPN由一对双侧额颞偶极子建模,假设代表岛叶的激活。岛叶皮层参与情感动机输入的处理,如本范式中反馈所携带的信息。然而,反馈刺激信息内容的处理本身也可能激活额叶皮层。反应和反馈刺激之后都有一个正峰,这可以由同一个深部后偶极子来描述。这两个峰可能都代表P3,它与情境更新有关。

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