Departamento de Raios Cósmicos e Cronologia, Instituto de Física Gleb Wataghin, Faculdade de Ciências Médicas, Universidade de Campinas, SP, Brasil.
Braz J Med Biol Res. 2011 Apr;44(4):345-53. doi: 10.1590/s0100-879x2011007500030.
In vivo proton magnetic resonance spectroscopy (¹H-MRS) is a technique capable of assessing biochemical content and pathways in normal and pathological tissue. In the brain, ¹H-MRS complements the information given by magnetic resonance images. The main goal of the present study was to assess the accuracy of ¹H-MRS for the classification of brain tumors in a pilot study comparing results obtained by manual and semi-automatic quantification of metabolites. In vivo single-voxel ¹H-MRS was performed in 24 control subjects and 26 patients with brain neoplasms that included meningiomas, high-grade neuroglial tumors and pilocytic astrocytomas. Seven metabolite groups (lactate, lipids, N-acetyl-aspartate, glutamate and glutamine group, total creatine, total choline, myo-inositol) were evaluated in all spectra by two methods: a manual one consisting of integration of manually defined peak areas, and the advanced method for accurate, robust and efficient spectral fitting (AMARES), a semi-automatic quantification method implemented in the jMRUI software. Statistical methods included discriminant analysis and the leave-one-out cross-validation method. Both manual and semi-automatic analyses detected differences in metabolite content between tumor groups and controls (P < 0.005). The classification accuracy obtained with the manual method was 75% for high-grade neuroglial tumors, 55% for meningiomas and 56% for pilocytic astrocytomas, while for the semi-automatic method it was 78, 70, and 98%, respectively. Both methods classified all control subjects correctly. The study demonstrated that ¹H-MRS accurately differentiated normal from tumoral brain tissue and confirmed the superiority of the semi-automatic quantification method.
体内质子磁共振波谱(¹H-MRS)是一种能够评估正常和病理组织中生化含量和途径的技术。在大脑中,¹H-MRS 补充了磁共振成像提供的信息。本研究的主要目的是评估¹H-MRS 在一项比较手动和半自动定量代谢物结果的试点研究中对脑肿瘤分类的准确性。在 24 名对照受试者和 26 名患有脑肿瘤的患者中进行了单体素¹H-MRS 检查,这些肿瘤包括脑膜瘤、高级神经胶质瘤和毛细胞星形细胞瘤。在所有光谱中,通过两种方法评估了七个代谢物组(乳酸、脂质、N-乙酰天冬氨酸、谷氨酸和谷氨酰胺组、总肌酸、总胆碱、肌醇):一种手动方法,包括手动定义峰面积的积分,以及用于准确、稳健和高效光谱拟合的高级方法(AMARES),这是一种在 jMRUI 软件中实现的半自动定量方法。统计方法包括判别分析和留一法交叉验证法。手动和半自动分析均检测到肿瘤组与对照组之间代谢物含量的差异(P<0.005)。手动方法对高级神经胶质瘤的分类准确率为 75%,对脑膜瘤为 55%,对毛细胞星形细胞瘤为 56%,而半自动方法的准确率分别为 78%、70%和 98%。两种方法均正确分类了所有对照受试者。该研究表明,¹H-MRS 能够准确地区分正常和肿瘤性脑组织,并证实了半自动定量方法的优越性。