Saatchian Erfan, Ehsani Sina, Montazerabadi Alireza
Department of Medical Physics, Mashhad University of Medical Sciences, Mashhad, Iran.
Medical Physics Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.
J Biomed Phys Eng. 2023 Feb 1;13(1):39-44. doi: 10.31661/jbpe.v0i0.2001-1055. eCollection 2023 Feb.
Magnetic resonance spectroscopy (MRS) is a non-invasive diagnostic and the neuroimaging method of choice for the noninvasive monitoring of brain metabolism in patients with glioma tumors. H-MRS is a reliable and non-invasive tool used to study glioma. However, the metabolite spectra obtained by H-MRS requires a specific quantification procedure for post-processing. According to our knowledge, no comparisons have yet been made between spectrum analysis software for quantification of gliomas metabolites.
Current study aims to evaluate the difference between this two common software in quantifying cerebral metabolites.
In this analytical study, we evaluate two post-processing software packages, java-based graphical for MR user interface packages (jMRUI) and totally automatic robust quantitation in NMR (TARQUIN) software. H-MRS spectrum from the brain of patients with gliomas tumors was collected for post-processing. AMARES algorithms were conducted to metabolite qualification on jMRUI software, and TARQUIN software were implemented with automated quantification algorithms. The study included a total of 30 subjects. For quantification, subjects were divided into a normal group (n=15) and group of gliomas (n=15).
When calculated by TARQUIN, the mean metabolites ratio was typically lower than by jMRUI. While, the mean ratio of metabolites varied when quantified by jMRUI vs. TARQUIN, both methods apparent clinical associations.
TARQUIN and jMRUI are feasible choices for the post-processing of cerebral MRS data obtained from glioma tumors.
磁共振波谱(MRS)是一种非侵入性诊断方法,是对胶质瘤患者脑代谢进行非侵入性监测的首选神经成像方法。氢质子磁共振波谱(H-MRS)是用于研究胶质瘤的可靠且非侵入性的工具。然而,通过H-MRS获得的代谢物谱需要特定的定量程序进行后处理。据我们所知,尚未对用于胶质瘤代谢物定量的谱分析软件进行比较。
本研究旨在评估这两种常用软件在定量脑代谢物方面的差异。
在这项分析研究中,我们评估了两个后处理软件包,基于Java的磁共振用户界面图形软件包(jMRUI)和核磁共振全自动稳健定量(TARQUIN)软件。收集胶质瘤患者大脑的H-MRS谱进行后处理。在jMRUI软件上采用AMARES算法进行代谢物定量,TARQUIN软件采用自动定量算法。该研究共纳入30名受试者。为进行定量,受试者分为正常组(n = 15)和胶质瘤组(n = 15)。
用TARQUIN计算时,代谢物平均比值通常低于jMRUI。然而,用jMRUI和TARQUIN定量时,代谢物平均比值有所不同,两种方法均有明显的临床相关性。
TARQUIN和jMRUI是对从胶质瘤获得的脑MRS数据进行后处理的可行选择。