首页> 外文期刊>The Journal of Nuclear Medicine >Metabolic Imaging of Cerebral Gliomas: Spatial Correlation of Changes in O-(2-18F-Fluoroethyl)-L-Tyrosine PET and Proton Magnetic Resonance Spectroscopic Imaging.
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Metabolic Imaging of Cerebral Gliomas: Spatial Correlation of Changes in O-(2-18F-Fluoroethyl)-L-Tyrosine PET and Proton Magnetic Resonance Spectroscopic Imaging.

机译:脑胶质瘤的代谢成像:O-(2-18F-氟乙基)-L-酪氨酸PET和质子磁共振波谱成像变化的空间相关性。

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The aim of this study was to determine the spatial correlation of O-(2-(18)F-fluoroethyl)-l-tyrosine ((18)F-FET) uptake and the concentrations of choline (Cho), creatine (Cr), and total N-acetylaspartate (tNAA) determined with proton magnetic resonance spectroscopic imaging ((1)H MRSI) in cerebral gliomas for the multimodal evaluation of metabolic changes. METHODS: (18)F-FET PET and 2-dimensional (1)H MRSI were performed in 15 patients with cerebral gliomas of World Health Organization (WHO) grades II-IV. PET and (1)H MRSI datasets were coregistered by use of mutual information. On the basis of their levels of (18)F-FET uptake, 4 different areas in a tumor (maximum, strong, moderate, and low (18)F-FET uptake) were defined on PET slices as being congruent with the volume of interest in the (1)H MRSI experiment. (18)F-FET uptake in lesions was evaluated as tumor-to-brain ratios. Metabolite concentrations for Cho, Cr, and tNAA and Cho/tNAA ratios were computed for these 4 areas in the tumor and for the contralateral normal brain. RESULTS: In the area with maximum (18)F-FET uptake, the concentration of tNAA (R = -0.588) and the Cho/tNAA ratio (R = 0.945) correlated significantly with (18)F-FET uptake. In the areas with strong and moderate (18)F-FET uptake, only the Cho/tNAA ratios (R = 0.811 and R = 0.531, respectively) were significantly associated with amino acid transport. At low (18)F-FET uptake, analysis of the correlations of amino acid uptake and metabolite concentrations yielded a significant result only for the concentration of Cr (R = 0.626). No correlation was found for metabolite concentrations determined with (1)H MRSI and (18)F-FET uptake in normal brain tissue. Maximum (18)F-FET uptake and the tNAA concentration were significantly different between gliomas of WHO grades II and IV, with P values of 0.032 and 0.016, respectively. CONCLUSION: High (18)F-FET uptake, which is indicative of tumor cell infiltration, associates with neuronal cell loss (tNAA) and changes in ratios between parameters representing membrane proliferation and those of neuronal loss (Cho/tNAA ratio), which can be measured by (1)H MRSI. The significant correlation coefficients detected for Cr in regions with low (18)F-FET uptake suggests an association between the mechanism governing amino acid transport and energy metabolism in areas that are infiltrated by tumor cells to a lesser extent. These findings motivate further research directed at investigating the potential of (1)H MRSI to define tumor boundaries in a manner analogous to that of amino acid PET.
机译:这项研究的目的是确定O-(2-(18)F-氟乙基)-1-酪氨酸((18)F-FET)摄取与胆碱(Cho),肌酸(Cr)浓度的空间相关性,并通过质子磁共振波谱成像((1)H MRSI)测定脑胶质瘤中的总N-乙酰天门冬氨酸(tNAA),用于代谢变化的多模式评估。方法:对15例世界卫生组织(WHO)II-IV级脑胶质瘤患者进行(18)F-FET PET和二维(1)H MRSI。通过使用互信息对PET和(1)H MRSI数据集进行共同注册。根据其(18)F-FET摄取水平,在PET切片上将肿瘤中的4个不同区域(最大,强,中和低(18)F-FET摄取)定义为与对(1)H MRSI实验感兴趣。 (18)病变中F-FET的摄取以肿瘤与脑的比率进行评估。计算了这四个区域和对侧正常脑的Cho,Cr,tNAA和Cho / tNAA比的代谢物浓度。结果:在最大(18)F-FET摄取区域,tNAA的浓度(R = -0.588)和Cho / tNAA比(R = 0.945)与(18)F-FET摄取显着相关。在具有强和中等(18)F-FET摄取的区域,只有Cho / tNAA比(分别为R = 0.811和R = 0.531)与氨基酸转运显着相关。在低(18)F-FET摄取下,氨基酸摄取与代谢物浓度之间的相关性分析仅在Cr浓度下(R = 0.626)产生了显着结果。在正常脑组织中,通过(1)H MRSI和(18)F-FET摄取确定的代谢物浓度没有相关性。 WHO和II级和IV级神经胶质瘤的最大(18)F-FET摄取量和tNAA浓度显着不同,P值分别为0.032和0.016。结论:高(18)F-FET摄取指示肿瘤细胞浸润,与神经元细胞损失(tNAA)以及代表膜增殖的参数与神经元损失参数之间的比率(Cho / tNAA比)相关,可以由(1)H MRSI测量。在低(18)F-FET摄取区域中检测到的Cr的显着相关系数表明,在较小程度被肿瘤细胞浸润的区域中,氨基酸运输的机制与能量代谢之间存在关联。这些发现促进了进一步的研究,旨在研究(1)H MRSI以类似于氨基酸PET的方式定义肿瘤边界的潜力。

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