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首页> 外文期刊>NeuroImage >Selection of voxel size and slice orientation for fMRI in the presence of susceptibility field gradients: application to imaging of the amygdala.
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Selection of voxel size and slice orientation for fMRI in the presence of susceptibility field gradients: application to imaging of the amygdala.

机译:在磁化场梯度存在下功能磁共振成像的体素大小和切片方向的选择:在杏仁核成像中的应用。

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摘要

The impact of voxel geometry on the blood oxygenation level-dependent (BOLD) signal detectability in the presence of field inhomogeneity is assessed and a quantitative approach to selecting appropriate voxel geometry is developed in this report. Application of the developed technique to BOLD sensitivity improvement of the human amygdala is presented. Field inhomogeneity was measured experimentally at 1.5 T and 3 T and the dominant susceptibility field gradient in the human amygdala was observed approximately along the superior-inferior direction. Based on the field mapping studies, an optimal selection for the slice orientation would be an oblique pseudo-coronal plane with its frequency-encoding direction parallel to the field gradient measured from each subject. Experimentally this was confirmed by comparing the normalized standard deviation of time-series echo-planar imaging signals acquired with different slice orientations, in the absence of a functional stimulus. A further confirmation with a carefully designed functional magnetic resonance imaging study is needed. Although the BOLD sensitivity may generally be improved by a voxel size commensurable with the activation volume, our quantitative analysis shows that the optimal voxel size also depends on the susceptibility field gradient and is usually smaller than the activation volume. The predicted phenomenon is confirmed with a hybrid simulation, in which the functional activation was mathematically added to the experimentally acquired rest-period echo-planar imaging data.
机译:在存在场不均匀性的情况下,评估了体素几何形状对血液氧合水平依赖性(BOLD)信号可检测性的影响,并在本报告中开发了选择合适的体素几何形状的定量方法。介绍了开发的技术在人类杏仁核大胆敏感性改善中的应用。实验在1.5 T和3 T下测量了场的不均匀性,并大致沿上下方向观察到了人类杏仁核的显性磁化场梯度。根据场映射研究,切片方向的最佳选择将是倾斜的伪冠状平面,其频率编码方向平行于从每个对象测量的场梯度。实验上,通过在没有功能性刺激的情况下,比较以不同切片方向获取的时间序列回波平面成像信号的标准化标准偏差,可以证实这一点。需要通过精心设计的功能磁共振成像研究进一步确认。尽管通常可以通过与激活体积相对应的体素大小来提高BOLD灵敏度,但我们的定量分析表明,最佳体素大小还取决于磁化场梯度,通常小于激活量。通过混合仿真确认了预测的现象,在该仿真中,将功能激活数学上添加到了实验获得的静止期回波平面成像数据中。

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