3T人脑定量松弛模板

Fang Cao, O. Commowick, Camille Maumet, C. Barillot
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引用次数: 3

摘要

脑磁共振成像(MRI)的发展推动了定量测量需求的增长。定量MRI (qMRI)弛豫时间和质子密度模板可以特别感兴趣的专用临床应用,如表征脑组织异常,以及一般的研究目的。在本文中,我们开发了由人类大脑在3T时的T1, T2, T2*和ρ*图组成的3D qMRI统计模板。qMRI模板是在20个正常对照的基础上构建的,每个正常对照的个体图谱以稳健的方式进行估计,考虑到采集伪影和松弛测量参数之间的预期关系。为了验证,我们将qMRI模板输入到一个真实的MRI模拟器中来合成磁共振加权图像,并将这些图像与真实的磁共振图像进行比较。高相关系数(>0.80)表明所开发的qMRI模板可以作为MRI模拟社区的输入数据集,这可能会对临床神经科学领域产生很大的兴趣。
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Quantitative relaxation templates for the human brain at 3T
The development of brain Magentic Resonance Imaging (MRI) is driving increasing demand for quantitative measurements. Quantitative MRI (qMRI) templates of relaxation times and proton density can be of particular interest for dedicated clinical applications such as characterizing brain tissue abnormalities, as well as general research purposes. In this paper, we have developed 3D qMRI statistical templates consisting of T1, T2, T2* and ρ* maps from the human brain at 3T. The qMRI templates were built from a population of 20 normal controls, for which individual maps were estimated in a robust manner, accounting for acquisition artifacts and expected relationships between the relaxometry parameters. For validation, we fed the qMRI templates into a realistic MRI simulator to synthesize MR-weighted images, and compared these images with the real MR acquisitions. High correlation coefficients (>0.80) show that the developed qMRI templates can be used as input dataset for MRI simulation community, which may be of great interest to clinical neuroscience field.
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