[an error occurred while processing this directive] | [an error occurred while processing this directive]
Value of BOLD-fMRI in the protection of visual function during postoperative intensity-modulated radiotherapy for cerebral gliomas
Gao Wenqi, Zhao Chaoyun, Wang Minglei, Xia Xinshe, Guo Yanhong, Shi Yanan, Huang Xueying, Ma Hui, Wang Xiaodong, Guo Yulin Xia Hechun
Department of Ningxia Medical University (Gao WQ,Zhao CY);Department of Radiology (Zhao CY,Wang ML,Huang XY,Wang XD,Guo YL),Department of Radiation Oncology (Xia XS,Guo HY),Department of Military Surgery (Ma H,Xia HC),General Hospital of Ningxia Medical University;Ningxia Key Laboratory of Craniocerebral Diseases (Ma H,Wang XD,Xia HC),Yinchuan 750004,China
AbstractObjective To investigate the clinical value of blood oxygenation level-dependent functional magnetic resonance imaging (BOLD-fMRI) in the protection of visual function during postoperative radiotherapy for occipital lobe gliomas. Methods Twenty-eight patients with occipital lobe gliomas receiving postoperative radiotherapy from 2014 to 2016 were enrolled as subjects. All patients underwent computed tomography (CT) simulation, conventional MRI, and BOLD-fMRI before radiotherapy. The location and scope of the visual cortex on 3DT1 anatomical images were used to guide the labeling of the visual cortex on simulated CT images. A visual cortex protective radiotherapy plan and a conventional radiotherapy plan were made by intensity-modulated radiotherapy. The feasibility of the visual cortex protective radiotherapy plan was evaluated using conformity index (CI), homogeneity index (HI), Dmax, and Dmean for planning target volume (PTV) and Dmax and Dmean to the visual cortex. Results For the two plans, if the effective dose to target volume was guaranteed and the doses to conventional organs at risk were acceptable, there were no significant differences in CI or HI for PTV between them (P=0.874,P=0.602).Compared with the conventional radiotherapy plan, the Dmax and Dmean to the ipsilateral visual cortex were reduced by 8.40% and 9.25%, respectively, while the Dmax and Dmean to the contralateral visual cortex were reduced by 13.26% and 14.77%, respectively, in the protective radiotherapy plan. Conclusions With a guaranteed prescribed dose to target volume and BOLD-fMRI used as a guide, the visual cortex protective radiotherapy, compared with the conventional plan, can reduce the dose to the visual cortex and protect the corresponding functional areas.
Fund:National Natural Science Foundation of China (81260373);Natural Science Foundation of Ningxia (NZ16272)
Corresponding Authors:
Wang Xiaodong,Email:xdw80@yeah.net
Cite this article:
. Value of BOLD-fMRI in the protection of visual function during postoperative intensity-modulated radiotherapy for cerebral gliomas[J]. Chinese Journal of Radiation Oncology, 2017, 26(12): 1370-1375.
. Value of BOLD-fMRI in the protection of visual function during postoperative intensity-modulated radiotherapy for cerebral gliomas[J]. Chinese Journal of Radiation Oncology, 2017, 26(12): 1370-1375.
[1] 郭明,王胜资,吴朝霞,等.IMRT计划优化参数中听觉器官分区限制剂量研究[J].中华放射肿瘤学杂志,2015,24(4):438-441.DOI:10.3760/cma.j.issn.1004-4221.2015.04.021. Guo M,Wang SZ,Wu ZX,et al. The research of IMRT plan optimization on dose limitation of sub regional auditory organ[J].Chin J Radiat Oncol,2015,24(4):438-441.DOI:10.3760/cma.j.issn.1004-4221.2015.04.021. [2] 于金明,李宝生.调强放疗的临床应用现状与存在的问题[J].中华肿瘤杂志,2005,27(3):188-190.DOI:10.3760/j. issn:0253-3766.2005.03.020. Yu JM,Li BS.Current situation and problems of clinical application of intensity modulated radiation therapy[J].Chin J Oncol,2005,27(3):188-190.DOI:10.3760/j. issn:0253-3766.2005.03.020. [3] Ogawa S,Tank DW,Menon R,et al. Intrinsic signal changes accompanying sensory stimulation:functional brain mapping with magnetic resonance imaging[J].Proc Natl Acad Sci USA,1992,89(13):5951-5955.DOI:10.1073/pnas.89.13.5951. [4] 林秀桐,孙涛,王传栋,等.旋转调强与固定野逆向IMRT在颅脑多发转移瘤中的剂量学比较研究[J].中华放射医学与防护杂志,2010,30(5):585-590.DOI:10.3760/cma.j.issn.0254-5098.2010.05.024. Lin XT,Sun T,Wang CD,et al. Dosimetric comparison of fixed field intensity modulated radiation therapy and RapidArc volumetric modulated arc therapy in treatment of multiple intracranial metastases[J].Chin J Radiol Med Prot,2010,30(5):585-590.DOI:10.3760/cma.j.issn.0254-5098.2010.05.024. [5] 刘卫东,王绪.调强放疗中的问题[J].中华放射医学与防护杂志,2004,24(6):590-593.DOI:10.3760/cma.j.issn.0254-5098.2004.06.047. Liu WD,Wang X.Problems in intensity modulated radiation therapy[J].Chin J Radiol Med Protect,2004,24(6):590-593.DOI:10.3760/cma.j.issn.0254-5098.2004.06.047. [6] Kurita H,Kawahara N,Asai A,et al. Radiation-induced apoptosis of oligodendrocytes in the adult rat brain[J].Neurol Res,2001,23(8):869-874.DOI:10.1179/ 016164101101199324. [7] Münter MW,Karger CP,Reith W,et al. Delayed vascular injury after single high-dose irradiation in the rat brain:histologic,immunohistochemical,and angiographic studies[J].Radiology,1999,212(2):475-482.DOI:10.1148/ radiology.212.2.r99au42475. [8] Seitz RJ,Huang YX,Knorr U,et al. Large-scale plasticity of the human motor cortex[J].Neuroreport,1995,6(5):742-744.DOI:10.1097/00001756-199503270-00009. [9] Ogawa S,Lee TM,Kay AR,et al. Brain magnetic resonance imaging with contrast dependent on blood oxygenation[J].Proc Natl Acad Sci USA,1990,87(24):9868-9872.DOI:10.1073/pnas.87.24.9868. [10] Just MA,Cherkassky VL,Keller TA,et al. Functional and anatomical cortical underconnectivity in autism:evidence from an fMRI study of an executive function task and corpus callosum morphometry[J].Cereb Cortex,2007,17(4):951-961.DOI:10.1093/cercor/bhl006. [11] Roessler K,Donat M,Lanzenberger R,et al. Evaluation of preoperative high magnetic field motor functional MRI (3 Tesla) in glioma patients by navigated electrocortical stimulation and postoperative outcome[J].J Neurol Neurosurg Psychiatry,2005,76(8):1152-1157.DOI:10.1136/jnnp.2004.050286. [12] 孙胜玉,马辉,王晓东,等.BOLD-fMRI和DTI结合神经导航在枕叶视觉功能区附近病变切除中的应用[J].中华神外科杂志,2011,27(9):925-928.DOI:10.3760/cma.j.issn.1001-2346.2011.09.019. Sun SY,Ma H,Wang XD,et al. Application of BOLD-fMRI and DTI on the treatment of lesions in or surrounding the occipital visual function area undergoing the neuronavigation[J].Chin J Neurosurg,2011,27(9):925-928.DOI:10.3760/cma.j.issn.1001-2346.2011.09.019. [13] Hall WA,Kim P,Truwit CL.Functional magnetic resonance imaging-guided brain tumor resection[J].Top Magn Reson Imaging,2008,19(4):205-212.DOI:10.1097/RMR.0b013e3181934a09. [14] 赵超云,王明磊,夏新舍,等.脑胶质瘤术后IMRT中弥散张量成像示踪视觉通路纤维束应用研究[J].中华放射肿瘤学杂志,2016,25(4):315-319.DOI:10.3760/cma.j.issn.1004-4221.2016.04.004. Zhao CY,Wang ML,Xia XS,et al. Application of diffusion tensor imaging in tracking visual pathway fiber bundles in postoperative intensity-modulated radiotherapy for cerebral gliomas[J].Chin J Radiat Oncol,2016,25(4):315-319.DOI:10.3760/cma.j.issn.1004-4221.2016.04.004. [15] Fraser JA,Newman NJ,Biousse V.Disorders of the optic tract,radiation,and occipital lobe[J].Handb Clin Neurol,2011,102:205-221.DOI:10.1016/B978-0-444-52903-9.00014-5. [16] 蒋华勇,王雅棣.高级别脑胶质瘤的放疗进展[J].中华放射肿瘤学杂志,2015,24(5):577-580.DOI:10.3760/cma.j.issn.1004-4221.2015.05.026. Jiang HY,Wang YD.Advances in radiotherapy for high-grade gliomas[J].Chin J Radiat Oncol,2015,24(5):577-580.DOI:10.3760/cma.j.issn.1004-4221.2015.05.026. [17] Marks LB,Yorke ED,Jackson A,et al. Use of normal tissue complication probability models in the clinic[J].Int J Radiat Oncol Biol Phys,2010,76(3):S10-S19.DOI:10.1016/j.ijrobp.2009.07.1754.