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人眼超短持续时间视觉刺激(0.1 至 5 毫秒)的 BOLD 信号与 VEP 的关系。

Relationship of the BOLD signal with VEP for ultrashort duration visual stimuli (0.1 to 5 ms) in humans.

机构信息

Max-Planck-Institute for Biological Cybernetics, High-Field Magnetic Resonance Center, Tübingen, Germany.

出版信息

J Cereb Blood Flow Metab. 2010 Feb;30(2):449-58. doi: 10.1038/jcbfm.2009.224. Epub 2009 Oct 21.

Abstract

There is currently a great interest to combine electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) to study brain function. Earlier studies have shown different EEG components to correlate well with the fMRI signal arguing for a complex relationship between both measurements. In this study, using separate EEG and fMRI measurements, we show that (1) 0.1 ms visual stimulation evokes detectable hemodynamic and visual-evoked potential (VEP) responses, (2) the negative VEP deflection at approximately 80 ms (N2) co-varies with stimulus duration/intensity such as with blood oxygenation level-dependent (BOLD) response; the positive deflection at approximately 120 ms (P2) does not, and (3) although the N2 VEP-BOLD relationship is approximately linear, deviation is evident at the limit of zero N2 VEP. The latter finding argues that, although EEG and fMRI measurements can co-vary, they reflect partially independent processes in the brain tissue. Finally, it is shown that the stimulus-induced impulse response function (IRF) at 0.1 ms and the intrinsic IRF during rest have different temporal dynamics, possibly due to predominance of neuromodulation during rest as compared with neurotransmission during stimulation. These results extend earlier findings regarding VEP-BOLD coupling and highlight the component- and context-dependency of the relationship between evoked potentials and hemodynamic responses.

摘要

目前,人们对将脑电图 (EEG) 和功能磁共振成像 (fMRI) 相结合以研究大脑功能非常感兴趣。早期的研究表明,不同的 EEG 成分与 fMRI 信号密切相关,这表明两者之间存在复杂的关系。在这项研究中,我们使用单独的 EEG 和 fMRI 测量结果表明:(1)0.1ms 的视觉刺激会引起可检测的血液动力学和视觉诱发电位 (VEP) 反应;(2) 大约 80ms 时的负 VEP 偏移(N2)与刺激持续时间/强度相关,如与血氧水平依赖 (BOLD) 反应相关;大约 120ms 时的正 VEP 偏移(P2)不相关;(3) 尽管 N2 VEP-BOLD 关系大致呈线性,但在 N2 VEP 接近零时,偏差明显。后一种发现表明,尽管 EEG 和 fMRI 测量结果可以相互变化,但它们反映了脑组织中部分独立的过程。最后,结果表明,在 0.1ms 时刺激引起的脉冲响应函数 (IRF) 和在休息时的固有 IRF 具有不同的时间动态,这可能是由于与刺激期间的神经传递相比,休息期间神经调制占主导地位。这些结果扩展了关于 VEP-BOLD 耦合的早期发现,并强调了诱发电位和血液动力学反应之间关系的组件和上下文依赖性。

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