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年龄对 P300 电位及相应 fMRI BOLD 信号的影响。

Age effects on the P300 potential and the corresponding fMRI BOLD-signal.

机构信息

Department of Psychiatry, Ruhr-University Bochum, Bochum, Germany.

出版信息

Neuroimage. 2012 May 1;60(4):2027-34. doi: 10.1016/j.neuroimage.2012.02.019. Epub 2012 Feb 17.

Abstract

Age has been reported to influence amplitude and latency of the P300 potential. Nevertheless, it is not yet fully understood which brain regions are responsible for these effects. The aim of this study was to investigate age-effects on the P300 potential and the simultaneously acquired BOLD signal of functional MRI. 32 healthy male subjects were investigated using an auditory oddball paradigm. The functional MRI data were acquired in temporal synchrony to the task. The evoked potential data were recorded during the intervals in between MR image acquisitions in order to reduce the influence of the scanner noise on the presentation of the tones and to reduce gradient artifacts. The age-effects were calculated by means of regression analyses. In addition, brain regions modulated by the task-induced amplitude variation of the P300 were identified (single trial analysis). The results indicated an age effect on the P300 amplitude. Younger subjects demonstrated increased parietal P300 amplitudes and increased BOLD responses in a network of brain regions including the anterior and posterior cingulate cortex, the insula, the temporo-parietal junction, the superior temporal gyrus, the caudate body, the amygdala and the parahippocampal gyrus. Single trial coupling of EEG and fMRI indicated that P300 amplitudes were predominantly associated with neural responses in the anterior cingulate cortex, the putamen and temporal brain areas. Taken together, the results indicate diminished neural responses in older compared to younger subjects especially in frontal, temporo-parietal and subcortical brain regions.

摘要

年龄被报道会影响 P300 电位的振幅和潜伏期。然而,哪些脑区负责这些影响仍不完全清楚。本研究旨在研究年龄对 P300 电位和同时获得的功能磁共振成像的 BOLD 信号的影响。32 名健康男性被试者采用听觉Oddball 范式进行研究。功能磁共振成像数据在任务进行的同时进行采集。诱发电位数据是在 MR 图像采集之间的间隔期间记录的,以减少扫描器噪声对音调和减少梯度伪影的影响。通过回归分析计算年龄效应。此外,还识别了任务诱导的 P300 振幅变化所调制的脑区(单试分析)。结果表明,P300 振幅存在年龄效应。年轻被试者表现出顶叶 P300 振幅增加和一系列脑区的 BOLD 反应增加,包括前扣带皮层和后扣带皮层、脑岛、颞顶交界处、颞上回、尾状核体、杏仁核和海马旁回。EEG 和 fMRI 的单试分析表明,P300 振幅主要与前扣带皮层、纹状体和颞叶脑区的神经反应相关。总的来说,结果表明与年轻被试者相比,老年被试者的神经反应减弱,特别是在前额叶、颞顶叶和皮质下脑区。

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