Garreffa Girolamo, Bianciardi Marta, Hagberg Gisela E, Macaluso Emiliano, Marciani Maria Grazia, Maraviglia Bruno, Abbafati Manuel, Carnì Marco, Bruni Ivo, Bianchi Luigi
Laboratorio Neurofisiopatologia, IRCCS Fondazione S. Lucia, 00179 ROMA, Italy; Enrico Fermi Center, 00184 Rome, Italy.
Magn Reson Imaging. 2004 Dec;22(10):1445-55. doi: 10.1016/j.mri.2004.10.013.
Simultaneous EEG-fMRI is a powerful tool to study spontaneous and evoked brain activity because of the complementary advantages of the two techniques in terms of temporal and spatial resolution. In recent years, a significant number of scientific works have been published on this subject. However, many technical problems related to the intrinsic incompatibility of EEG and MRI methods are still not fully solved. Furthermore, simultaneous acquisition of EEG and event-related fMRI requires precise synchronization of all devices involved in the experimental setup. Thus, timing issue must be carefully considered in order to avoid significant methodological errors. The aim of the present work is to highlight and discuss some of technical and methodological open issues associated with the combined use of EEG and fMRI. These issues are presented in the context of preliminary data regarding simultaneous acquisition of event-related evoked potentials and BOLD images during a visual odd-ball paradigm.
同步脑电图-功能磁共振成像(EEG-fMRI)是研究自发和诱发脑活动的有力工具,因为这两种技术在时间和空间分辨率方面具有互补优势。近年来,关于这一主题已发表了大量科学著作。然而,许多与脑电图和磁共振成像方法内在不兼容性相关的技术问题仍未得到充分解决。此外,同步采集脑电图和事件相关功能磁共振成像需要实验装置中所有设备的精确同步。因此,必须仔细考虑时间问题,以避免重大的方法学错误。本研究的目的是突出并讨论与脑电图和功能磁共振成像联合使用相关的一些技术和方法学未解决问题。这些问题是在关于视觉Odd-ball范式期间同步采集事件相关诱发电位和血氧水平依赖(BOLD)图像的初步数据背景下提出的。