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人类颅内 EEG-fMRI 的同步记录:方案考虑因素和数据质量。

Simultaneous intracranial EEG-fMRI in humans: protocol considerations and data quality.

机构信息

Imaging and Biophysics Unit, UCL Institute of Child Health, 30 Guilford Street, London, WC1N 1EH, UK.

出版信息

Neuroimage. 2012 Oct 15;63(1):301-9. doi: 10.1016/j.neuroimage.2012.05.056. Epub 2012 May 29.

Abstract

We have recently performed simultaneous intracranial EEG and fMRI recordings (icEEG-fMRI) in patients with epilepsy. In this technical note, we examine limited thermometric data for potential electrode heating during our protocol and found that heating was ≤0.1 °C in-vitro at least 10 fold less than in-vivo limits. We quantify EEG quality, which can be degraded by MRI scanner-induced artefacts, and fMRI image (gradient echo echo-planar imaging: GE-EPI) signal quality around the electrodes, which can be degraded by electrode interactions with B1 (radiofrequency) and B0 (static) magnetic fields. We recorded EEG outside and within the MRI scanner with and without scanning. EEG quality was largely preserved during scanning and in particular heartbeat-related artefacts were small compared to epileptic events. To assess the GE-EPI signal reduction around the electrodes, we compared image signal intensity along paths into the brain normal to its surface originating from the individual platinum-iridium electrode contacts. GE-EPI images were obtained at 1.5 T with an echo time (TE) of 40 ms and repetition time (TR) of 3000 ms and a slice thickness of 2.5 mm. We found that GE-EPI signal intensity reduction was confined to a 10 mm radius and that it was reduced on average by less than 50% at 5mm from the electrode contacts. The GE-EPI image signal reduction also varied with electrode orientation relative to the MRI scanner axes; in particular, cortical grid contacts with a normal along the scanner's main magnetic field (B(0)) axis have higher artefact levels relative to those with a normal perpendicular to the z-axis. This suggests that the artefacts were predominantly susceptibility-related rather than due to B1 interactions. This information can be used to guide interpretation of results of icEEG-fMRI experiments proximal to the electrodes, and to optimise artefact reduction strategies.

摘要

我们最近在癫痫患者中同时进行了颅内 EEG 和 fMRI 记录(icEEG-fMRI)。在本技术说明中,我们检查了我们方案中潜在电极加热的有限测温数据,发现体外加热≤0.1°C,至少比体内限制低 10 倍。我们量化了 EEG 质量,MRI 扫描仪引起的伪影会降低 EEG 质量,以及电极周围 fMRI 图像(梯度回波回波平面成像:GE-EPI)信号质量,电极与 B1(射频)和 B0(静态)磁场的相互作用会降低信号质量。我们在有和没有扫描的情况下在 MRI 扫描仪内外记录 EEG。在扫描过程中,EEG 质量基本保持不变,特别是与心跳相关的伪影与癫痫发作相比很小。为了评估电极周围 GE-EPI 信号的减少,我们比较了沿与大脑表面垂直的路径进入大脑的图像信号强度,该路径起源于单个铂铱电极接触点。在 1.5 T 下使用回波时间(TE)为 40 ms 和重复时间(TR)为 3000 ms 以及切片厚度为 2.5 mm 获得了 GE-EPI 图像。我们发现 GE-EPI 信号强度的减少局限于 10 mm 的半径内,并且在距电极接触点 5mm 处平均减少不到 50%。GE-EPI 图像信号的减少也随电极相对于 MRI 扫描仪轴的方向而变化;特别是,具有沿扫描仪主磁场(B(0))轴的法线的皮层网格电极相对于具有垂直于 z 轴的法线的电极具有更高的伪影水平。这表明这些伪影主要是与磁化率相关,而不是与 B1 相互作用有关。这些信息可用于指导靠近电极的 icEEG-fMRI 实验结果的解释,并优化伪影减少策略。

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