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优化的定量磁共振波谱用于临床常规。

Optimized quantitative magnetic resonance spectroscopy for clinical routine.

机构信息

Support Center for Advanced Neuroimaging, Institute for Diagnostic and Interventional Neuroradiology, Inselspital, Berne University Hospital, University of Berne, Switzerland.

出版信息

Magn Reson Med. 2013 Jul;70(1):25-32. doi: 10.1002/mrm.24455. Epub 2012 Aug 20.

Abstract

Several practical obstacles in data handling and evaluation complicate the use of quantitative localized magnetic resonance spectroscopy (qMRS) in clinical routine MR examinations. To overcome these obstacles, a clinically feasible MR pulse sequence protocol based on standard available MR pulse sequences for qMRS has been implemented along with newly added functionalities to the free software package jMRUI-v5.0 to make qMRS attractive for clinical routine. This enables (a) easy and fast DICOM data transfer from the MR console and the qMRS-computer, (b) visualization of combined MR spectroscopy and imaging, (c) creation and network transfer of spectroscopy reports in DICOM format, (d) integration of advanced water reference models for absolute quantification, and (e) setup of databases containing normal metabolite concentrations of healthy subjects. To demonstrate the work-flow of qMRS using these implementations, databases for normal metabolite concentration in different regions of brain tissue were created using spectroscopic data acquired in 55 normal subjects (age range 6-61 years) using 1.5T and 3T MR systems, and illustrated in one clinical case of typical brain tumor (primitive neuroectodermal tumor). The MR pulse sequence protocol and newly implemented software functionalities facilitate the incorporation of qMRS and reference to normal value metabolite concentration data in daily clinical routine.

摘要

在数据处理和评估方面存在一些实际障碍,这使得定量局部磁共振波谱(qMRS)在临床常规磁共振检查中的应用变得复杂。为了克服这些障碍,我们在现有的用于 qMRS 的标准磁共振脉冲序列的基础上,结合新添加的功能,实现了一种临床可行的磁共振脉冲序列协议,并将其应用于免费软件包 jMRUI-v5.0 中,以使 qMRS 更适用于临床常规应用。这使得(a)能够轻松、快速地从磁共振控制台和 qMRS 计算机进行 DICOM 数据传输,(b)可以结合磁共振波谱和成像进行可视化,(c)能够以 DICOM 格式创建和网络传输波谱报告,(d)可以集成用于绝对定量的先进的水参考模型,以及(e)可以设置包含健康受试者正常代谢物浓度的数据库。为了展示使用这些实现方法的 qMRS 工作流程,我们使用在 1.5T 和 3T 磁共振系统中采集的 55 名正常受试者(年龄范围为 6-61 岁)的光谱数据,创建了不同脑组织区域正常代谢物浓度的数据库,并在一个典型脑肿瘤(原始神经外胚层肿瘤)的临床病例中进行了说明。该磁共振脉冲序列协议和新实现的软件功能有助于将 qMRS 与正常参考值代谢物浓度数据纳入日常临床常规。

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