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在一个通过触觉获取的参数化空间意象任务中,顶叶皮层中血氧水平依赖(BOLD)信号变化与慢波事件相关电位(ERPs)的紧密共变。

Tight covariation of BOLD signal changes and slow ERPs in the parietal cortex in a parametric spatial imagery task with haptic acquisition.

作者信息

Schicke Tobias, Muckli Lars, Beer Anton L, Wibral Michael, Singer Wolf, Goebel Rainer, Rösler Frank, Röder Brigitte

机构信息

Biological Psychology and Neuropsychology, University of Hamburg, D-20146 Hamburg, Germany.

出版信息

Eur J Neurosci. 2006 Apr;23(7):1910-8. doi: 10.1111/j.1460-9568.2006.04720.x.

Abstract

The present study investigated the relation of brain activity patterns measured with functional magnetic resonance imaging (fMRI) and slow event-related potentials (ERPs) associated with a complex cognitive task. A second goal was to examine the neural correlates of spatial imagery of haptically--instead of visually--acquired representations. Using a mental image scanning task, spatial imagery requirements were systematically manipulated by parametrically varying the distance between haptically acquired landmarks. Results showed a close relation between slow ERPs and the blood oxygenation level dependent (BOLD) signal in human parietal lobe. Reaction times of mental scanning correlated with the distances between landmarks on the learned display. In parallel, duration and amplitude of slow ERPs and duration of the haemodynamic response systematically varied as a function of mental scanning distance. Source analysis confirmed that the ERP imagery effect likely originated from the same cortical substrate as the corresponding BOLD effect. This covariation of the BOLD signal with slow ERPs is in line with recent findings in animals demonstrating a tight link between local field potentials and the BOLD signal. The parietal location of the imagery effect is consistent with the idea that externally triggered (perceptual) and mentally driven (imagery) spatial processes are both mediated by the same supramodal brain areas.

摘要

本研究调查了通过功能磁共振成像(fMRI)测量的大脑活动模式与与复杂认知任务相关的慢事件相关电位(ERP)之间的关系。第二个目标是研究通过触觉而非视觉获得的表征的空间意象的神经关联。使用心理图像扫描任务,通过参数化改变触觉获得的地标之间的距离,系统地操纵空间意象要求。结果显示,人类顶叶中慢ERP与血氧水平依赖(BOLD)信号之间存在密切关系。心理扫描的反应时间与学习显示中地标之间的距离相关。同时,慢ERP的持续时间和幅度以及血液动力学反应的持续时间随心理扫描距离系统地变化。源分析证实,ERP意象效应可能起源于与相应BOLD效应相同的皮质底物。BOLD信号与慢ERP的这种共变与最近在动物中的发现一致,这些发现表明局部场电位与BOLD信号之间存在紧密联系。意象效应在顶叶的定位与以下观点一致,即外部触发(感知)和心理驱动(意象)的空间过程均由相同的超模式脑区介导。

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