[1] 薛志东, 吴正东. 食管癌治疗中TP方案化疗序贯三维适形放疗的临床应用[J]. 中华肿瘤防治杂志, 2011, 18(20): 1646−1648. DOI: 10.16073/j.cnki.cjcpt.2011.20.017. Xue ZD, Wu ZD. Application sequential chemotherapy with taxol plus cisplatin and three-dimensional conformal radiation therapy in esophageal cancer[J]. Chin J Cancer Prev Treat, 2011, 18(20): 1646−1648. DOI: 10.16073/j.cnki.cjcpt.2011.20.017.
[2] Fried DV, Das SK, Marks LB. Imaging Radiation-Induced Normal Tissue Injury to Quantify Regional Dose Response[J]. Semin Radiat Oncol, 2017, 27(4): 325−331. DOI: 10.1016/j.semradonc.2017.04.004.
[3] Kalman NS, Zhao SS, Anscher MS, et al. Current Status of Targeted Radioprotection and Radiation Injury Mitigation and Treatment Agents: A Critical Review of the Literature[J]. Int J Radiat Oncol Biol Phys, 2017, 98(3): 662−682. DOI: 10.1016/j.ijrobp.2017.02.211.
[4] 中华医学会核医学分会大型医用设备临床使用评价指标制定工作委员会. SPECT和SPECT/CT仪临床使用评价指标(2015版)[J]. 中华核医学与分子影像杂志, 2015, 35(5): 414−416. DOI: 10.3760/cma.j.issn.2095−2848.2015.05.019. Working Committee for the Establishment of Clinical Use Evaluation Indexes of Large Medical Equipment of Nuclear Medicine Branch of Chinese Medical Association. SPECT and SPECT/CT instrument clinical use evaluation indicators[J]. Chin J Nucl Med Mol Imaging, 2015, 35(5): 414−416. DOI: 10.3760/cma.j.issn.2095−2848.2015.05.019.
[5] 陈永盛. 肺癌调强适型放疗临床靶区勾画的研究[J/OL]. 临床检验杂志: 电子版, 2017, 6(3): 460−462[2019-02-18]. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=lcjyzz-d201703014. DOI: CNKI:SUN:LNJI.0.2017-03-014. Chen YS. Study of the clinical target volume in intensity modulated radiation therapy for lung cancer[J/OL]. Clin Lab J: Electron Ed, 2017, 6(3): 460−462[2019-02-18]. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=lcjyzz-d201703014. DOI: CNKI:SUN:LNJI.0.2017-03-014.
[6] 安锐, 黄钢. 核医学[M]. 3版. 北京: 人民卫生出版社, 2016: 182−195. An R, Huang G. Nuclear medicine[M]. 3rd ed. Beijing: People's Medical Publishing House, 2016: 182−195.
[7] 任佳忠, 霍宗伟, 王晓慧, 等. 99Tcm-MIBI显像在99Tcm-MDP显像不能定性骨病灶中的应用价值[J]. 中华核医学与分子影像杂志, 2018, 38(3): 182−186. DOI: 10.3760/cma.j.issn.2095−2848.2018.03.008. Ren JZ, Huo ZW, Wang XH, et al. Clinical value of 99Tcm-MIBI scintigraphy for bone lesions of indefinite diagnosis with 99Tcm-MDP bone imaging[J]. Chin J Nucl Med Mol Imaging, 2018, 38(3): 182−186. DOI: 10.3760/cma.j.issn.2095−2848.2018.03.008.
[8] 邓群力, 莫逸, 刘康龙. 99mTc-亚甲基二膦酸盐骨显像评价乳腺癌骨转移的特征[J]. 分子影像学杂志, 2018, 41(3): 316−319. DOI: 10.3969/j.issn.1674−4500.2018.03.07. Deng QL, Mo Y, Liu KL. Evaluation of characteristic of breast cancer bone metastasis with 99mTc-MDP bone imaging[J]. J Mol Imaging, 2018, 41(3): 316−319. DOI: 10.3969/j.issn.1674−4500.2018.03.07.
[9] 陈刚, 徐万龙, 锡林宝勒日, 等. 放疗后椎体骨细胞放射性损伤的评估[J]. 江苏医药, 2011, 37(16): 1882−1884. DOI: 10.19460/j.cnki.0253−3685.2011.16.008. Chen G, Xu WL, Xilin BLR, et al. Evaluation of radiation damages of vertebral bone cells after radiotherapy in dogs[J]. Jiangsu Med J, 2011, 37(16): 1882−1884. DOI: 10.19460/j.cnki.0253−3685.2011.16.008.
[10] Deloch L, Derer A, Hartmann J, et al. Modern Radiotherapy Concepts and the Impact of Radiation on Immune Activation [J/OL]. Front Oncol, 2016, 6: 141[2019-02-18]. https://www.frontiersin.org/articles/10.3389/fonc.2016.00141/full. DOI: 10.3389/fonc.2016.00141.
[11] 付正, 周静, 郭延栾, 等. 肿瘤患者放疗后照射野内椎体骨髓FDG PET/CT影像学表现[J]. 中国辐射卫生, 2016, 25(2): 233−236. DOI: 10.13491/j.cnki.issn.1004−714x.2016.02.038. Fu Z, Zhou J, Guo YL, et al. PET/CT Features of the Bone Marrow in the Radiation Field after Radiation Therapy[J]. Chin J Radiol Health, 2016, 25(2): 233−236. DOI: 10.13491/j.cnki.issn.1004−714x.2016.02.038.
[12] 刘卫东, 刘建平, 郭猛, 等. 胸部肿瘤适形和调强常规分割放疗脊髓生物效应剂量研究[J]. 国际放射医学核医学杂志, 2018, 42(6): 518-523. DOI: 10.3760/cma.j.issn.1673-4114.2018.06.008. Liu WD, Liu JP, Guo M, et al. The study for biological effect dose of spinal cord in thoracic tumors with the model of conformal and intensity modulated technique and conventional fractionation[J]. Int J Radiat Med Nucl Med, 2018, 42(6): 518-523. DOI: 10.3760/cma.j.issn.1673-4114.2018.06.008.
[13] Lee SJ, Yeo JS, Lee HJ, et al. Thymidine phosphorylase influences [18F]fluorothymidine uptake in cancer cells and patients with non-small cell lung cancer[J]. Eur J Nucl Med Mol Imaging, 2014, 41(7): 1327−1335. DOI: 10.1007/s00259−014−2712−z.
[14] Wei RL, Jung BC, Manzano W, et al. Bone mineral density loss in thoracic and lumbar vertebrae following radiation for abdominal cancers[J]. Radiat Oncol, 2016, 118(3): 430−436. DOI: 10.1016/j.radonc.2016.03.002.
[15] Dicostanzo D, Barney CL, Bazan JG. SU-F-T-106: A Dosimetric Study of Intensity Modulated Radiation Therapy to Decrease Radiation Dose to the Thoracic Vertebral Bodies in Patients Receiving Concurrent Chemoradiation for Lung Cancer[J]. Med Phys, 2016, 43(6 pt 14): 3486−3486. DOI: 10.1118/1.4956242.
[16] Jin JY, Huang YM, Brown SL, et al. Radiation dose-fractionation effects in spinal cord: comparison of animal and human data[J]. J Radiat Oncol, 2015, 4(3): 225−233. DOI: 10.1007/s13566−015−0212−9.
[17] 于潜, 田大力, 李厚文, 等. 局限期小细胞肺癌综合治疗疗效临床对比研究[J]. 实用肿瘤杂志, 2012, 27(3): 283−286. DOI: 10.13267/j.cnki.syzlzz.2012.03.025. Yu Q, Tian DL, Li HW, et al. Clinical contrast study on effect of multi-modality therapy for limited small-cell lung cancer[J]. J Pract Oncol, 2012, 27(3): 283−286. DOI: 10.13267/j.cnki.syzlzz.2012.03.025.
[18] 林端瑜, 唐明灯, 林爱珠. 恶性肿瘤放射治疗对骨显像的影响[J]. 福建医药杂志, 2002, 24(6): 9−11. DOI: 10.3969/j.issn.1002−2600.2002.06.006. Lin DY, Tang MD, Lin AZ. Effect of radiotherapy for malignancy on bone scanning[J]. Fujian Med J, 2002, 24(6): 9−11. DOI: 10.3969/j.issn.1002−2600.2002.06.006.