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一种用于MRI信号多指数自旋-自旋弛豫分析的后处理方法。

A post-processing method for multiexponential spin-spin relaxation analysis of MRI signals.

作者信息

Gensanne D, Josse G, Lagarde J M, Vincensini D

机构信息

Laboratoire de Chimie Bioinorganique Médicale, Imagerie thérapeutique et diagnostique, CNRS FR 2599, Université Paul Sabatier, 118, route de Narbonne, 31062 Toulouse Cedex, France.

出版信息

Phys Med Biol. 2005 Aug 21;50(16):3755-72. doi: 10.1088/0031-9155/50/16/007. Epub 2005 Jul 28.

Abstract

Quantitative MR imaging is a potential tool for tissue characterization; in particular, proton density and proton relaxation times can be derived from MR signal analysis. However, MR image noise affects the accuracy of measurements and the number of tissue parameters that can be reliably estimated. Filtering can be used to limit image noise; however this reduces spatial resolution. In this work we studied, using both simulations and experiments, a filter called a 'selective blurring filter'. Compared to other classical filters, this filter achieves the best compromise between spatial resolution and noise reduction. The filter was specifically used to reliably determine the bi-component transverse relaxation of protons in adipose tissue. Long and short relaxation times and the relative proton fraction of each component were obtained with a degree of uncertainty of less than 10% and an accuracy of 95%.

摘要

定量磁共振成像(MR成像)是一种用于组织特征描述的潜在工具;特别是,质子密度和质子弛豫时间可以通过MR信号分析得出。然而,MR图像噪声会影响测量的准确性以及能够可靠估计的组织参数数量。滤波可用于限制图像噪声;但这会降低空间分辨率。在这项工作中,我们通过模拟和实验研究了一种称为“选择性模糊滤波器”的滤波器。与其他传统滤波器相比,该滤波器在空间分辨率和降噪之间实现了最佳折衷。该滤波器专门用于可靠地确定脂肪组织中质子的双组分横向弛豫。获得了长弛豫时间和短弛豫时间以及各组分的相对质子分数,其不确定度小于10%,准确度为95%。

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