MRC Cognition and Brain Sciences Unit, 15 Chaucer Road, Cambridge, UK.
Neuroimage. 2010 Jan 1;49(1):316-26. doi: 10.1016/j.neuroimage.2009.08.032. Epub 2009 Aug 21.
FMRI studies of the orbitofrontal cortex or the inferior temporal lobes are often compromised by susceptibility artefacts, which may result in signal reduction or loss in gradient echo (GE) EPI. Spin echo (SE) EPI is considerably more robust against susceptibility-related signal loss, but its intrinsic sensitivity to changes in the blood oxygenation level dependent (BOLD) contrast is generally lower. In this study, we performed a direct comparison of GE and SE fMRI using a single-shot dual echo EPI acquisition scheme. Transient hypercapnia, induced by breathing Carbogen (5% CO(2), 95% O(2)), was used as a global physiological stimulus to alter the BOLD contrast. In regions affected by magnetic field inhomogeneities, SE EPI provided significantly higher BOLD sensitivity than GE EPI. Such regions included the orbitofrontal cortex, temporal pole, anterior inferior temporal cortex, as well as parts of the lateral inferior temporal cortex and the lateral cerebellum. Dual echo fMRI benefits from the robustness of SE EPI in these critical regions while utilising the generally higher sensitivity of GE EPI in normal regions. It therefore provides an attractive solution for fMRI studies that require optimum sensitivity in both normal and critical brain regions. Furthermore, a general method is proposed to combine the GE and SE data into a single hybrid data set that provides optimum sensitivity in the whole brain. This method can be applied to any experimental design that can be expressed in terms of a generalised linear model. The feasibility of this approach is demonstrated both theoretically and experimentally.
功能磁共振成像(fMRI)研究的眶额皮质或下颞叶经常受到易感性伪影的影响,这可能导致梯度回波(GE)EPI 中的信号减少或丢失。自旋回波(SE)EPI 对与易感性相关的信号丢失具有相当大的鲁棒性,但它对血氧水平依赖(BOLD)对比变化的固有敏感性通常较低。在这项研究中,我们使用单次双回波 EPI 采集方案对 GE 和 SE fMRI 进行了直接比较。通过呼吸 Carbogen(5%CO2,95%O2)来诱导短暂性高碳酸血症,作为改变 BOLD 对比的全局生理刺激。在受磁场不均匀性影响的区域中,SE EPI 提供的 BOLD 敏感性明显高于 GE EPI。这些区域包括眶额皮质、颞极、前下颞叶皮质以及外侧下颞叶皮质和外侧小脑的部分区域。双回波 fMRI 受益于 SE EPI 在这些关键区域的稳健性,同时在正常区域利用 GE EPI 的一般较高敏感性。因此,它为需要在正常和关键脑区都具有最佳灵敏度的 fMRI 研究提供了一种有吸引力的解决方案。此外,提出了一种将 GE 和 SE 数据组合到单个混合数据集的通用方法,该数据集在整个大脑中提供最佳灵敏度。这种方法可应用于任何可以用广义线性模型表示的实验设计。该方法的可行性在理论和实验上都得到了证明。