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多层采集对3T下关节软骨T1和T2测量的影响。

Effect of multislice acquisition on T1 and T2 measurements of articular cartilage at 3T.

作者信息

Watanabe Atsuya, Boesch Chris, Obata Takayuki, Anderson Suzanne E

机构信息

Department of Clinical Research, Unit for MR Spectroscopy and Methodology, University of Bern, Bern, Switzerland.

出版信息

J Magn Reson Imaging. 2007 Jul;26(1):109-17. doi: 10.1002/jmri.20962.

Abstract

PURPOSE

The aim of this study was to investigate the effect of magnetization transfer on multislice T1 and T2 measurements of articular cartilage.

MATERIALS AND METHODS

A set of phantoms with different concentrations of collagen and contrast agent (Gd-DTPA2-) were used for the in vitro study. A total of 20 healthy knees were used for the in vivo study. T1 and T2 measurements were performed using fast-spin-echo inversion-recovery (FSE-IR) sequence and multi-spin-echo (MSE) sequence, respectively, in both in vitro and in vivo studies. We investigated the difference in T1 and T2 values between that measured by single-slice acquisition and that measured by multislice acquisition.

RESULTS

Regarding T1 measurement, a large drop of T1 in all slices and also a large interslice variation in T1 were observed when multislice acquisition was used. Regarding T2 measurement, a substantial drop of T2 in all slices was observed; however, there was no apparent interslice variation when multislice acquisition was used.

CONCLUSION

This study demonstrated that the adaptation of multislice acquisition technique for T1 measurement using FSE-IR methodology is difficult and its use for clinical evaluation is problematic. In contrast, multislice acquisition for T2 measurement using MSE was clinically applicable if inaccuracies caused by multislice acquisition were taken into account.

摘要

目的

本研究旨在探讨磁化传递对关节软骨多层T1和T2测量的影响。

材料与方法

一组含有不同浓度胶原蛋白和造影剂(钆-二乙三胺五乙酸二负离子)的模型用于体外研究。共有20个健康膝关节用于体内研究。在体外和体内研究中,分别使用快速自旋回波反转恢复(FSE-IR)序列和多自旋回波(MSE)序列进行T1和T2测量。我们研究了单层采集测量值与多层采集测量值之间T1和T2值的差异。

结果

关于T1测量,当使用多层采集时,观察到所有层面的T1大幅下降以及层面间T1的较大差异。关于T2测量,观察到所有层面的T2大幅下降;然而,使用多层采集时层面间没有明显差异。

结论

本研究表明,采用FSE-IR方法将多层采集技术应用于T1测量存在困难,其用于临床评估存在问题。相比之下,如果考虑到多层采集引起的误差,使用MSE进行T2测量的多层采集在临床上是适用的。

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