[1]胡旭磊 何 涛 孙胜玉 邹有瑞 马 辉.氢质子磁共振波谱成像在脑胶质瘤诊断中的研究进展[J].中国临床神经外科杂志,2020,(07):485-487.[doi:10.13798/j.issn.1009-153X.2020.07.025]
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氢质子磁共振波谱成像在脑胶质瘤诊断中的研究进展()
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《中国临床神经外科杂志》[ISSN:1009-153X/CN:42-1603/TN]

卷:
期数:
2020年07期
页码:
485-487
栏目:
综述
出版日期:
2020-07-25

文章信息/Info

文章编号:
1009-153X(2020)07-0485-03
作者:
胡旭磊 何 涛 孙胜玉 邹有瑞 马 辉
750001 银川,宁夏医科大学总医院神经外科(胡旭磊、孙胜玉、邹有瑞、马 辉),临床医学院(胡旭磊);442000 湖北十堰,湖北医药学院附属国药东风总医院骨科(何 涛)
关键词:
脑胶质瘤氢质子磁共振波谱成像诊断预后
分类号:
R 739.42; R 651.1+1
DOI:
10.13798/j.issn.1009-153X.2020.07.025
文献标志码:
A

参考文献/References:

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[2] Stupp R, Mason WP, van den Bent MJ, et al. Radiotherapy plus concomitant and adjuvant temozolomide for gliobla- stoma [J]. N Engl J Med, 2005, 352(10): 987-996.
[3] Moffett J R, Ross B, Arun P, et al. N-Acetylaspartate in the CNS: from neurodiagnostics to neurobiology[J]. Prog Neuro- biol, 2007, 81(2): 89-131.
[4] 李 华,田 刚. 多体素磁共振质子波谱在脑胶质瘤诊断 中的应用[J]. 中国实验诊断学,2011,15(7):1223-1225.
[5] Wang Q, Zhang J, Xu W, et al. Role of magnetic resonance spectroscopy to differentiate high-grade gliomas from meta- stases [J]. Tumour Biol, 2017, 39(6): 1010428317710030.
[6] 黄 莉,黄穗乔,袁小平,等. 胶质瘤瘤体及瘤周1H MRS、 ADC值与Ki67的相关性研究 [J]. 实用放射学杂志, 2013,29(6):875-879.
[7] Zhang J, Zhuang D X, Yao C J, et al. Metabolic approach for tumor delineation in glioma surgery: 3D MR spectroscopy image-guided resection [J]. J Neurosurg, 2016, 124(6): 1585-1593.
[8] Zeng Q, Liu H, Zhang K, et al. Noninvasive evaluation of cerebral glioma grade by using multivoxel 3D proton MR spectroscopy [J]. Magn Reson Imaging, 2011, 29(1): 25-31.
[9] Nakamura H, Doi M, Suzuki T, et al. The significance of lactate and lipid peaks for predicting primary neuroepithe- lial tumor grade with proton MR spectroscopy [J]. Magn Reson Med Sci, 2018, 17(3): 238-243.
[10] Ando K, Ishikura R, Nagami Y, et al. Usefulness of Cho/Cr ratio in protonMR spectroscopy for differentiating residual/ recurrent glioma from non-neoplastic lesions [J]. Nippon IgakuHoshasen Gakkai Zasshi, 2004, 64: 121-126.
[11] Traber F, Block W, Flacke S, et al. 1H-MR Spectroscopy of brain tumors in the course of radiation therapy: use of fast spectroscopic imaging and singlevoxel spectroscopy for diagnosing recurrence [J]. Rofo, 2002, 174: 33-42.
[12] Rock JP, Scarpace L, Hearshen D, et al. Associations among magnetic resonance spectroscopy, apparent diffusion coeffi- cients, and image-guided histopathology with special attention to radiation necrosis [J]. Neurosurgery, 2004, 54: 1111-1117.
[13] Zhang H, Ma L, Wang Q, et al. Role of magnetic resonance spectroscopy for the differentiation of recurrent glioma from radiation necrosis: a systematic review and meta-analysis [J]. Eur J Radiol, 2014, 83(12): 2181-2189.
[14] Anselmi M, Catalucci A, Felli V, et al. Diagnostic accuracy of proton magnetic resonance spectroscopy and perfusion- weighted imaging in brain gliomas follow-up: a single institutional experience [J]. Neuroradiol J, 2017, 30(3): 240-252.
[15] Tabatabai G, Weller M. Glioblastoma stem cells [J]. Cell Tissue Res, 2011, 343(3): 459-465.
[16] Kreso A, Dick JE. Evolution of the cancer stem cell model [J]. Cell Stem Cell, 2014, 14(3): 275-291.
[17] Caivano R, Lotumolo A, Rabasco P, et al. 3 Tesla magnetic resonance spectroscopy: cerebral gliomas vs. metastatic brain tumors. Our experience and review of the literature [J]. Int J Neurosci, 2013, 123(8): 537-543.
[18] Shimizu H, Kumabe T, Shirane R, et al. Correlation between choline level measured by proton MR spectroscopy and Ki- 67 labeling index in gliomas [J]. AJNR Am J Neuroradiol, 2000, 21(4): 659-665.
[19] He T, Qiu TM, Wang XD, et al. Multivoxel magnetic reso- nance spectroscopy identifies enriched foci of cancer stem- like cells in high-grade gliomas [J]. Onco Targets Ther, 2017, 10: 195-203.

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备注/Memo

备注/Memo:
(2019-01-22收稿,2019-02-21修回)基金项目:国家自然科学基金(81760449);宁夏回族自治区自然科学基金(NZ16127) 通讯作者:马 辉,E-mail:mahui0528@aliyun.com
更新日期/Last Update: 2020-07-20