Department of Psychology, University of Minnesota, Minneapolis, MN 55455, USA.
Magn Reson Imaging. 2010 Nov;28(9):1258-69. doi: 10.1016/j.mri.2010.06.001. Epub 2010 Jul 24.
For blood oxygenation level-dependent (BOLD) functional MRI experiments, contrast-to-noise ratio (CNR) increases with increasing field strength for both gradient echo (GE) and spin echo (SE) BOLD techniques. However, susceptibility artifacts and nonuniform coil sensitivity profiles complicate large field-of-view fMRI experiments (e.g., experiments covering multiple visual areas instead of focusing on a single cortical region). Here, we use SE BOLD to acquire retinotopic mapping data in early visual areas, testing the feasibility of SE BOLD experiments spanning multiple cortical areas at 7T. We also use a recently developed method for normalizing signal intensity in T(1)-weighted anatomical images to enable automated segmentation of the cortical gray matter for scans acquired at 7T with either surface or volume coils. We find that the CNR of the 7T GE data (average single-voxel, single-scan stimulus coherence: 0.41) is almost twice that of the 3T GE BOLD data (average coherence: 0.25), with the CNR of the SE BOLD data (average coherence: 0.23) comparable to that of the 3T GE data. Repeated measurements in individual subjects find that maps acquired with 1.8-mm resolution at 3T and 7T with GE BOLD and at 7T with SE BOLD show no systematic differences in either the area or the boundary locations for V1, V2 and V3, demonstrating the feasibility of high-resolution SE BOLD experiments with good sensitivity throughout multiple visual areas.
对于血氧水平依赖(BOLD)功能磁共振成像实验,对于梯度回波(GE)和自旋回波(SE)BOLD 技术,对比噪声比(CNR)随场强的增加而增加。然而,磁化率伪影和非均匀线圈灵敏度分布使大视场 fMRI 实验复杂化(例如,覆盖多个视觉区域的实验,而不是集中在单个皮质区域)。在这里,我们使用 SE BOLD 技术在早期视觉区域获取视网膜映射数据,测试在 7T 下跨越多个皮质区域进行 SE BOLD 实验的可行性。我们还使用了一种最近开发的方法,对 T1 加权解剖图像中的信号强度进行归一化,以实现 7T 扫描的皮质灰质的自动分割,这些扫描使用表面或容积线圈采集。我们发现,7T GE 数据的 CNR(平均单像素、单扫描刺激相干性:0.41)几乎是 3T GE BOLD 数据的两倍(平均相干性:0.25),而 SE BOLD 数据的 CNR(平均相干性:0.23)与 3T GE 数据相当。在个体受试者中的重复测量发现,在 3T 和 7T 上以 1.8mm 分辨率采集的 GE BOLD 和以 7T 采集的 SE BOLD 地图在 V1、V2 和 V3 的区域和边界位置上没有系统差异,证明了在多个视觉区域具有良好灵敏度的高分辨率 SE BOLD 实验的可行性。