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3特斯拉下的磁共振波谱成像(MRSI)在人脑肿瘤中的初步研究

Downfield Proton MRSI at 3 Tesla: A Pilot Study in Human Brain Tumors.

作者信息

Özdemir İpek, Kamson David O, Etyemez Semra, Blair Lindsay, Lin Doris D M, Barker Peter B

机构信息

Russell H. Morgan Department of Radiology and Radiological Science, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

Sidney Kimmel Comprehensive Cancer Center, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Cancers (Basel). 2023 Aug 29;15(17):4311. doi: 10.3390/cancers15174311.

Abstract

PURPOSE

To investigate the use of 3D downfield proton magnetic resonance spectroscopic imaging (DF-MRSI) for evaluation of tumor recurrence in patients with glioblastoma (GBM).

METHODS

Seven patients (4F, age range 44-65 and mean ± standard deviation 59.3 ± 7.5 years) with previously treated GBM were scanned using a recently developed 3D DF-MRSI sequence at 3T. Short TE 3D DF-MRSI and water reference 3D-MRSI scans were collected with a nominal spatial resolution of 0.7 cm. DF volume data in eight slices covered 12 cm of brain in the cranio-caudal axis. Data were analyzed using the 'LCModel' program and a basis set containing nine peaks ranging in frequency between 6.83 to 8.49 ppm. The DF8.18 (assigned to amides) and DF7.90 peaks were selected for the creation of metabolic images and statistical analysis. Longitudinal MR images and clinical history were used to classify brain lesions as either recurrent tumor or treatment effect, which may include necrosis. DF-MRSI data were compared between lesion groups (recurrent tumor, treatment effect) and normal-appearing brain.

RESULTS

Of the seven brain tumor patients, two were classified as having recurrent tumor and the rest were classified as treatment effect. Amide metabolite levels from recurrent tumor regions were significantly ( < 0.05) higher compared to both normal-appearing brain and treatment effect regions. Amide levels in lesion voxels classified as treatment effect were significantly lower than normal brain.

CONCLUSIONS

3D DF-MRSI in human brain tumors at 3T is feasible and was well tolerated by all patients enrolled in this preliminary study. Amide levels measured by 3D DF-MRSI were significantly different between treatment effect and tumor regrowth.

摘要

目的

探讨三维下场质子磁共振波谱成像(DF-MRSI)在评估胶质母细胞瘤(GBM)患者肿瘤复发中的应用。

方法

对7例曾接受治疗的GBM患者(4例女性,年龄范围44 - 65岁,平均±标准差59.3±7.5岁)使用最近开发的3T三维DF-MRSI序列进行扫描。采集短回波时间的三维DF-MRSI和水参考三维磁共振波谱成像扫描,标称空间分辨率为0.7 cm。八个层面的DF体积数据在颅尾轴上覆盖12 cm的脑区。使用“LCModel”程序和包含九个频率范围在6.83至8.49 ppm之间峰的基组对数据进行分析。选择DF8.18(归属于酰胺)和DF7.90峰来创建代谢图像并进行统计分析。利用纵向磁共振图像和临床病史将脑病变分类为复发肿瘤或治疗效果,治疗效果可能包括坏死。比较病变组(复发肿瘤、治疗效果)与正常脑区的DF-MRSI数据。

结果

7例脑肿瘤患者中,2例被分类为复发肿瘤,其余被分类为治疗效果。与正常脑区和治疗效果区域相比,复发肿瘤区域的酰胺代谢物水平显著更高(<0.05)。被分类为治疗效果的病变体素中的酰胺水平显著低于正常脑区。

结论

3T下在人脑肿瘤中进行三维DF-MRSI是可行的,且参与本初步研究的所有患者耐受性良好。三维DF-MRSI测量的酰胺水平在治疗效果和肿瘤再生长之间存在显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be2c/10486526/b936dbcc7990/cancers-15-04311-g001.jpg

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