申正文, 谭霞, 李师, 田秀梅, 罗焕丽, 靳富, 王颖. 不同算法下鼻咽癌调强放射治疗计划中空腔和骨性结构对剂量评估的影响[J]. 中国生物医学工程学报, 2022, 41(2): 252-256.
Shen Zhengwen, Tan Xia, Li Shi, Tian Xiumei, Luo Huanli, Jin Fu, Wang Ying. The Influence of Cavity and Bony Structure on Dosimetry Evaluation in Nasopharyngeal CarcinomaIMRT Plans Using Different Algorithms. Chinese Journal of Biomedical Engineering, 2022, 41(2): 252-256.
[1] 谭霞, 罗焕丽, 王颖, 等. 宫颈癌调强放疗在体剂量监测初步研究 [J]. 中华放射肿瘤学杂志, 2020, 29(9): 784-789. [2] 刘潇, 尹勇, 王莉, 等. 宫颈癌IMRT计划独立三维剂量验算的初步应用与探讨 [J]. 中华放射肿瘤学杂志, 2017, 26(4): 433-436. [3] 曹午飞, 陈立新, 邓小武, 等. 独立验算软件调强放疗质量控制可行性研究 [J]. 中华放射肿瘤学杂志, 2011, 20(6): 521-524. [4] 中国鼻咽癌临床分期工作委员会. 2010鼻咽癌调强放疗靶区及剂量设计指引专家共识 [J].中华放射肿瘤学杂志, 2011, 20(4): 267-269. [5] Sikora M, Dohm O, Alber M. A virtual photon source model of an Elekta linear accelerator with integrated mini MLC for Monte Carlo based IMRT dose calculation [J]. Phys Med Biol, 2007, 52(15): 4449-4463. [6] Sikora M, Alber M. A virtual source model of electron contamination of a therapeutic photon beam [J]. Phys Med Biol, 2009, 54(24): 7329-7344. [7] Nordstrom F, Wetterstedt S, Johnsson S. Control chart analysis of data from a multicenter monitor unit verification study [J]. Radiother Oncol, 2012, 102(3): 364-370. [8] Hoffmann L, Alber M, Shn M, et al. Validation of the Acuros XB dose calculation algorithm versus Monte Carlo for clinical treatment plans [J]. Med Phys, 2018, 45(8): 1-7. [9] 傅玉川, 唐斌, 李平. 基于蒙特卡罗算法的肿瘤放射治疗计划系统的研究进展 [J]. 华西医学, 2010, 4(12): 2129-2132. [10] Vassiliev ON, Wareing TA, Mcghee J, et al. Validation of a new grid-based Boltzmann equation solver for dose calculation in radiotherapy with photon beams [J]. Phys Med Biol, 2010, 55(3): 581-598. [11] Han T, Mourtada F, Kisling K, et al. Experimental validation of deterministic Acuros XB algorithm for IMRT and VMAT dose calculations with the Radiological Physics Center's head and neck phantom [J]. Med Phys, 2012, 39(4): 2193-2202. [12] Ma CM, Li J. Dose specification for radiation therapy: dose to water or dose to medium? [J]. Phys Med Biol, 2011, 56(10): 3073-3089. [13] Bush K , Gagne I M , Zavgorodni S , et al. Dosimetric validation of AcurosXB with Monte Carlo methods for photon dose calculations [J]. Med Phys, 2011, 38(4): 2208-2221. [14] 姚凯宁, 岳海振, 王若曦, 等. 基于蒙特卡罗模拟的直肠癌术前容积调强放射治疗计划剂量验证 [J]. 中国医学物理学杂志, 2020, 37 (5): 7-12. [15] Han T, Mikell JK, Salehpour M, et al. Dosimetric comparison of AcurosXB deterministic radiation transport method with Monte Carlo and model-based convolution methods in heterogeneous media [J]. Med Phys, 2011, 38(5): 2651-2664. [16] Rana S, Rogers K. Dosimetric evaluation of Acuros XB dose calculation algorithm with measurements in predicting doses beyond different air gap thickness for smaller and larger field sizes [J]. J Med Phys, 2013, 38(1): 9-14. [17] Kan MW, Leung LH, So RW, et al. Experimental verification of the Acuros XB and AAA dose calculation adjacent to heterogeneous media for IMRT and RapidArc of nasopharygeal carcinoma [J]. Med Phys, 2013, 40(3): 031714. [18] Kan MW, Leung LH, Yu PK. Dosimetric impact of using the Acuros XB algorithm for intensity modulated radiation therapy and RapidArc planning in nasopharyngeal carcinomas [J]. Int J Radiat Oncol Biol Phys, 2013, 85(1): e73-e80.