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基于体素的形态测量分析在3T时对成像协议选择的敏感性。

Sensitivity of voxel-based morphometry analysis to choice of imaging protocol at 3 T.

作者信息

Tardif Christine L, Collins D Louis, Pike G Bruce

机构信息

McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada.

出版信息

Neuroimage. 2009 Feb 1;44(3):827-38. doi: 10.1016/j.neuroimage.2008.09.053. Epub 2008 Oct 19.

Abstract

The objective of this study was to determine which 3D T(1)-weighted acquisition protocol at 3 T is best suited to voxel-based morphometry (VBM), and to characterize the sensitivity of VBM to choice of acquisition. First, image quality of three commonly used protocols, FLASH, MP-RAGE and MDEFT, was evaluated in terms of SNR, CNR, image uniformity and point spread function. These image metrics were estimated from simulations, phantom imaging and human studies. We then performed a VBM study on nine subjects scanned twice using the three protocols to evaluate differences in grey matter (GM) density and scan-rescan variability between the protocols. These results reveal the relative bias and precision of the tissue classification obtained using the different protocols. MDEFT achieved the highest CNR between white and grey matter, and the lowest GM density variability of the three sequences. Each protocol is also characterized by a distinct regional bias in GM density due to the effect of transmission field inhomogeneity on image uniformity combined with spatially variant GM T(1) values and the sequence's T(1) contrast function. The required population sample size estimates to detect a difference in GM density in longitudinal VBM studies, i.e. based only on methodological variance, were lowest for MDEFT. Although MP-RAGE requires more subjects than FLASH, its higher cortical CNR improves the accuracy of the tissue classification results, particularly in the motor cortex. For cross-sectional VBM studies, the variance in morphology across the population is likely to be the primary source of variability in the power analysis.

摘要

本研究的目的是确定3T下哪种三维T1加权采集协议最适合基于体素的形态测量学(VBM),并表征VBM对采集选择的敏感性。首先,从信噪比(SNR)、对比噪声比(CNR)、图像均匀性和点扩散函数方面评估了三种常用协议FLASH、MP-RAGE和MDEFT的图像质量。这些图像指标是通过模拟、体模成像和人体研究估计得出的。然后,我们对9名受试者进行了VBM研究,使用这三种协议对他们进行了两次扫描,以评估不同协议之间灰质(GM)密度的差异以及扫描-重扫变异性。这些结果揭示了使用不同协议获得的组织分类的相对偏差和精度。在三种序列中,MDEFT实现了白质与灰质之间的最高CNR,以及最低的GM密度变异性。由于传输场不均匀性对图像均匀性的影响,结合空间变化的GM T1值和序列的T1对比函数,每种协议还具有GM密度的独特区域偏差。在纵向VBM研究中,即仅基于方法学方差检测GM密度差异所需的总体样本量估计中,MDEFT是最低的。尽管MP-RAGE比FLASH需要更多的受试者,但其较高的皮质CNR提高了组织分类结果的准确性,特别是在运动皮层。对于横断面VBM研究,人群中形态的差异可能是功效分析中变异性的主要来源。

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