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快速功能磁共振成像在癫痫网络分析中提供了高统计功效。

Fast fMRI provides high statistical power in the analysis of epileptic networks.

机构信息

Department of Neuropediatrics and Muscular Diseases, University Medical Center Freiburg, Mathildenstrasse 1, 79106 Freiburg, Germany.

Department of Neuropediatrics and Muscular Diseases, University Medical Center Freiburg, Mathildenstrasse 1, 79106 Freiburg, Germany.

出版信息

Neuroimage. 2014 Mar;88:282-94. doi: 10.1016/j.neuroimage.2013.10.018. Epub 2013 Oct 18.

Abstract

EEG-fMRI is a unique method to combine the high temporal resolution of EEG with the high spatial resolution of MRI to study generators of intrinsic brain signals such as sleep grapho-elements or epileptic spikes. While the standard EPI sequence in fMRI experiments has a temporal resolution of around 2.5-3s a newly established fast fMRI sequence called MREG (Magnetic-Resonance-Encephalography) provides a temporal resolution of around 100ms. This technical novelty promises to improve statistics, facilitate correction of physiological artifacts and improve the understanding of epileptic networks in fMRI. The present study compares simultaneous EEG-EPI and EEG-MREG analyzing epileptic spikes to determine the yield of fast MRI in the analysis of intrinsic brain signals. Patients with frequent interictal spikes (>3/20min) underwent EEG-MREG and EEG-EPI (3T, 20min each, voxel size 3×3×3mm, EPI TR=2.61s, MREG TR=0.1s). Timings of the spikes were used in an event-related analysis to generate activation maps of t-statistics. (FMRISTAT, |t|>3.5, cluster size: 7 voxels, p<0.05 corrected). For both sequences, the amplitude and location of significant BOLD activations were compared with the spike topography. 13 patients were recorded and 33 different spike types could be analyzed. Peak T-values were significantly higher in MREG than in EPI (p<0.0001). Positive BOLD effects correlating with the spike topography were found in 8/29 spike types using the EPI and in 22/33 spikes types using the MREG sequence. Negative BOLD responses in the default mode network could be observed in 3/29 spike types with the EPI and in 19/33 with the MREG sequence. With the latter method, BOLD changes were observed even when few spikes occurred during the investigation. Simultaneous EEG-MREG thus is possible with good EEG quality and shows higher sensitivity in regard to the localization of spike-related BOLD responses than EEG-EPI. The development of new methods of analysis for this sequence such as modeling of physiological noise, temporal analysis of the BOLD signal and defining appropriate thresholds is required to fully profit from its high temporal resolution.

摘要

EEG-fMRI 是一种将 EEG 的高时间分辨率与 MRI 的高空间分辨率相结合的独特方法,用于研究睡眠图形元素或癫痫棘波等内在脑信号的产生源。虽然 fMRI 实验中的标准 EPI 序列的时间分辨率约为 2.5-3s,但一种新建立的快速 fMRI 序列称为 MREG(磁共振脑图),其时间分辨率约为 100ms。这项技术创新有望提高统计学水平,便于纠正生理伪影,并提高 fMRI 中对癫痫网络的理解。本研究比较了同时进行的 EEG-EPI 和 EEG-MREG 分析癫痫棘波,以确定快速 MRI 在分析内在脑信号中的效果。经常出现发作间期棘波(>3/20min)的患者接受了 EEG-MREG 和 EEG-EPI 检查(3T,每次 20min,体素大小 3×3×3mm,EPI TR=2.61s,MREG TR=0.1s)。棘波的时间用于事件相关分析,以生成 t 统计量的激活图。(FMRISTAT,|t|>3.5,簇大小:7 个体素,p<0.05 校正)。对于两种序列,比较了显著 BOLD 激活的幅度和位置与棘波的形态。记录了 13 名患者,可分析 33 种不同的棘波类型。MREG 中的峰值 T 值明显高于 EPI(p<0.0001)。使用 EPI 序列可以在 29 种棘波类型中的 8 种中找到与棘波形态相关的正 BOLD 效应,而在 MREG 序列中可以在 33 种棘波类型中的 22 种中找到。在 EPI 中,在 29 种棘波类型中的 3 种中可以观察到默认模式网络中的负 BOLD 反应,而在 MREG 序列中,在 33 种棘波类型中的 19 种中可以观察到负 BOLD 反应。使用后一种方法,即使在检查过程中发生的棘波较少,也可以观察到 BOLD 变化。因此,与 EEG-EPI 相比,同时进行 EEG-MREG 是可行的,并且在定位与棘波相关的 BOLD 反应方面具有更高的敏感性。需要开发这种序列的新分析方法,例如生理噪声建模、BOLD 信号的时间分析和定义适当的阈值,以充分利用其高时间分辨率。

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