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12 个小动物 MRI 系统中纵向弛豫率的可重复性和再现性

Repeatability and reproducibility of longitudinal relaxation rate in 12 small-animal MRI systems.

作者信息

Waterton John C, Hines Catherine D G, Hockings Paul D, Laitinen Iina, Ziemian Sabina, Campbell Simon, Gottschalk Michael, Green Claudia, Haase Michael, Hassemer Katja, Juretschke Hans-Paul, Koehler Sascha, Lloyd William, Luo Yanping, Mahmutovic Persson Irma, O'Connor James P B, Olsson Lars E, Pindoria Kashmira, Schneider Jurgen E, Sourbron Steven, Steinmann Denise, Strobel Klaus, Tadimalla Sirisha, Teh Irvin, Veltien Andor, Zhang Xiaomeng, Schütz Gunnar

机构信息

Bioxydyn Ltd, Manchester Science Park, Rutherford House, Pencroft Way, MANCHESTER M15 6SZ, United Kingdom; Centre for Imaging Sciences, Division of Informatics Imaging & Data Sciences, School of Health Sciences, Faculty of Biology Medicine & Health, University of Manchester, Manchester Academic Health Sciences Centre, MANCHESTER M13 9PL, United Kingdom.

Merck & Co., Inc., West Point, PA, United States of America.

出版信息

Magn Reson Imaging. 2019 Jun;59:121-129. doi: 10.1016/j.mri.2019.03.008. Epub 2019 Mar 12.

Abstract

BACKGROUND

Many translational MR biomarkers derive from measurements of the water proton longitudinal relaxation rate R, but evidence for between-site reproducibility of R in small-animal MRI is lacking.

OBJECTIVE

To assess R repeatability and multi-site reproducibility in phantoms for preclinical MRI.

METHODS

R was measured by saturation recovery in 2% agarose phantoms with five nickel chloride concentrations in 12 magnets at 5 field strengths in 11 centres on two different occasions within 1-13 days. R was analysed in three different regions of interest, giving 360 measurements in total. Root-mean-square repeatability and reproducibility coefficients of variation (CoV) were calculated. Propagation of reproducibility errors into 21 translational MR measurements and biomarkers was estimated. Relaxivities were calculated. Dynamic signal stability was also measured.

RESULTS

CoV for day-to-day repeatability (N = 180 regions of interest) was 2.34% and for between-centre reproducibility (N = 9 centres) was 1.43%. Mostly, these do not propagate to biologically significant between-centre error, although a few R-based MR biomarkers were found to be quite sensitive even to such small errors in R, notably in myocardial fibrosis, in white matter, and in oxygen-enhanced MRI. The relaxivity of aqueous Ni in 2% agarose varied between 0.66 s mM at 3 T and 0.94 s mM at 11.7T.

INTERPRETATION

While several factors affect the reproducibility of R-based MR biomarkers measured preclinically, between-centre propagation of errors arising from intrinsic equipment irreproducibility should in most cases be small. However, in a few specific cases exceptional efforts might be required to ensure R-reproducibility.

摘要

背景

许多转化型磁共振生物标志物来自水质子纵向弛豫率R的测量,但缺乏小动物磁共振成像中R在不同站点间可重复性的证据。

目的

评估临床前磁共振成像中模型内R的重复性和多站点可重复性。

方法

在11个中心的12台磁体中,于5种场强下,在1 - 13天内的两个不同时间点,通过饱和恢复法在含有5种氯化镍浓度的2%琼脂糖模型中测量R。在三个不同的感兴趣区域分析R,共进行360次测量。计算均方根重复性和可重复性变异系数(CoV)。估计可重复性误差在21种转化型磁共振测量和生物标志物中的传播情况。计算弛豫率。还测量了动态信号稳定性。

结果

日常重复性(N = 180个感兴趣区域)的CoV为2.34%,中心间可重复性(N = 9个中心)的CoV为1.43%。大多数情况下,这些误差不会传播到具有生物学意义的中心间误差,尽管发现一些基于R的磁共振生物标志物对R的这种小误差相当敏感,特别是在心肌纤维化、白质和氧增强磁共振成像中。2%琼脂糖中水性镍的弛豫率在3T时为0.66 s mM,在11.7T时为0.94 s mM。

解读

虽然有几个因素影响临床前测量的基于R的磁共振生物标志物的可重复性,但在大多数情况下,由设备固有不可重复性引起的误差在中心间的传播应该很小。然而,在一些特定情况下,可能需要做出特殊努力以确保R的可重复性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54bc/6477178/24a09697a758/gr1.jpg

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