Bagshaw Andrew P, Torab Leili, Kobayashi Eliane, Hawco Colin, Dubeau François, Pike G Bruce, Gotman Jean
School of Psychology, University of Birmingham, Birmingham, United Kingdom.
J Magn Reson Imaging. 2006 Nov;24(5):1025-32. doi: 10.1002/jmri.20744.
To use z-shimming, a technique that reduces signal loss due to susceptibility artifacts that can result in reduced or absent activation in electroencephalography (EEG) functional MRI (fMRI) sessions in patients with temporal lobe epilepsy (TLE), to determine whether it would result in an increased ability to detect significant regions of blood oxygenation level-dependent (BOLD) signal change.
Eight patients with TL EEG spikes underwent an EEG-fMRI scanning session using z-shimming. The signal intensities in the z-shimmed images were compared with those in the standard images. BOLD activation maps were created from the two sets of images using the timings of the spikes observed on the EEG.
The mean signal increase in the TLs as a result of z-shimming was 45.9%+/-4.5%. The percentage of TL voxels above a brain intensity threshold rose from 66.1%+/-7.6% to 77.6%+/-5.7%. This appreciable increase in signal did not lead to any significant differences in the statistical maps created with the two sets of functional images.
The results suggest that loss of signal is not the limiting factor for the detection of spike-related BOLD signal changes in patients with TLE activity.
使用z轴匀场技术,该技术可减少由于磁化率伪影导致的信号损失,这种伪影可能会导致颞叶癫痫(TLE)患者在脑电图(EEG)功能磁共振成像(fMRI)检查中激活减弱或消失,以确定其是否会提高检测血氧水平依赖(BOLD)信号显著变化区域的能力。
8例有颞叶脑电图尖波的患者接受了使用z轴匀场技术的EEG-fMRI扫描检查。将z轴匀场图像中的信号强度与标准图像中的信号强度进行比较。利用EEG上观察到的尖波时间,从两组图像中创建BOLD激活图。
z轴匀场后颞叶的平均信号增加了45.9%±4.5%。高于脑强度阈值的颞叶体素百分比从66.1%±7.6%上升到77.6%±5.7%。信号的这种显著增加并未导致用两组功能图像创建的统计图出现任何显著差异。
结果表明,信号损失不是检测TLE活动患者中与尖波相关的BOLD信号变化的限制因素。