- 胸部肿瘤放射性粒子治疗学(第2版)
- 柴树德 郑广钧
- 1381字
- 2020-08-29 04:23:58
参考文献
1.Y.Yu,L.L.Anderson,Z.Li,et al.Permanent prostate seed implant brachytherapy:Report of the American Association of Physicists in Medicine Task Group No.64,Med.Phys.26.10,October 1999.
2.J.Van Dyk.The Modern Technology of radiaton oncology.Wisconsin:Medical Physics Publishing,1999.
3.J.F.Williamson,W.Butler,L.A.DeWerd,et al.Recommendations of the American Association of Physicists in Medicine regarding the impact of implementing the 2004 task group 43 report on dose specification for 125I and 103Pd interstitial brachytherapy.Med.Phys,2005,32(5).
4.R.Nath,L.L.Anderson,G.Luxton,et al.Dosimetry of interstitial brachytharepy sources:Recommendations of the AAPM Radiation Therapy Committee Task Group No.43,Med.Phys,1995,22:209-234.
5.Gerbaulet A.The GEC ESTRO Handbook of Brachytherapy.ESTRO,2002.
6.Jeffrey F Williamson.Brachytherapy technology and physics practice since 1950:a half-century of progress.Phys Med Biol,2006,51:R303-R325.
7.Zelefsky MJ,Kuban DA,Levy LB,et al.Multi-institutional analysis of long-term outcome for stages T1-T2 prostate cancer treated with permanent seed implantation.Int J Radiat Oncol Biol Phys,2007,67:327-333.
8.王俊杰,张福君.放射性粒子组织间近距离治疗前列腺癌.第2版.北京:北京大学医学出版社,2007.
9.殷蔚伯,谷铣之.肿瘤放射治疗学.第3版.北京:中国协和医科大学出版社,2002.
10.Ling CC,Li WX,Anderson LL.The relative biological effectiveness of I-125 and Pd-103.Int J Radiat Oncol Biol Phys,1995,32:373-378.
11.Wuu CS,Zaider MA.Calculation of the relative biological effectiveness of 125I and 103Pd brachytherapy sources using the concept of proximity function.Med Phys,1998,25:2186-2189.
12.廖安燕,王俊杰.125I粒子持续低剂量率照射对人前列腺癌细胞的抑制作用.中华放射医学与防护杂志,2007,27:12-15.
13.Ling CC,Spiro IJ,and Mitchell J,et al.The variation of OER with dose rate.Int J Radiat Oncol Biol Phys,1985,11:1367-1373.
14.Teh BS,Berner BM,and Carpenter LS,et al.Permanent gold-198 implant for locally recurrent adenocarcinoma of the prostate after failing initial radiotherapy.J.Brachytherapy Int,1998,14:233-240.
15.Murphy M K,Piper R K,and Greenwood L R,et al.Evaluation of the new cesium-131 seed for use in low-energy x-ray brachytherapy.Med.Phys,2004,31:1529-38.
16.Armpilia CI,Dale RG,Coles IP,et al.The determination of radiobiologically optimized half-lives for radionuclides used in permanent brachytherapy implants.Int J Radiat Oncol Biol Phys,2003,55:378-385.
17.Dale RG,Jones B,Coles IP.Effect of tumour shrinkage on the biological effectiveness of permanent brachytherapy implants.Br J Radiol,1994,67:639-45.
18.胡逸民,张红志,戴建荣.肿瘤放射物理学.北京:原子能出版社,1999.
19.Ling CC,Roy J,Sahoo N,Wallner K,et al.Quantifying the effect of dose inhomogeneity in brachytherapy:Application to permanent prostatic implant with 125I seeds.Int.J.Radiat.Oncol Biol Phys,1994,28:971-978.
20.Battermann JJ,Boon TA,Moerland MA.Results of permanent prostate brachytherapy,13 years of experience at a single institution.Radiother Oncol,2004,71:23-28.
21.Potters L,Morgenstern C,Calugaru E,et al.12-year outcomes following permanent prostate brachytherapy in patients with clinically localized prostate cancer.J Urol,2005,173:1562-1566.
22.Martin AG,Roy J,and Beaulieu L,et al.Permanent prostate implant using high activity seeds and inverse planning with fast simulated annealing algorithm:a 12-year Canadian experience.Int J Radiat Oncol Biol Phys,2007,67:334-341.
23.JJ Mazeron,P Scalliet,E Van Limbergen et al.Radiobiology of brachytherapy and the dose-rate effect.The GEC ESTRO handbook of brachytherapy,2002,95-121.
24.Beaulieu L,Archambault L,Aubin S,et al.The robustness of dose distributions to displacement and migration of 125I permanent seed implants over a wide range of seed number,activity,and designs.Int J Radiat Oncol Biol Phys,2004,58:1298-1308.
25.Hilaris BS,Martini N.Interstitial brachytherapy in cancer of the lung:a 20 year experience.Int J Radiat Oncol Biol Phys 1979,5:1951-1956.
26.杨瑞杰,张红志,王俊杰.放射性粒子组织间永久性植入的物理学特性.中国肿瘤临床与康复杂志,2008,15(6):96-98.
27.林蕾,王俊杰.放射性125I粒子植入治疗非小细胞肺癌进展.癌症进展,2013,11(2):122-125.
28.Yingdong Zhang,Junjie Wang,Feng Liu,et al.EGFR inhibitor C225 increases the radiosensitivity of human lung squamous cancer cells.Cancer Cell International,2010,10:39.
29.Ang Qu,Hao Wang,Jinna Li,et al.Biological Effects of 125I Seeds Radiation on A549 Lung Cancer Cells:G2/M Arrest and Enhanced Cell Death.cancer investigation,2014,32(6):209-217.
30.赵楠,杨瑞杰,王俊杰.放射性粒子剂量学特性研究进展.中华放射医学与防护杂志,2015,35(10):797-800.
31.Yang R,Wang J,Zhang H.Dosimetric study of 131Cs,I-125,and Pd-103 seeds for permanent prostate brachytherapy.Cancer Biother Radiopharm,2009,24:701-705.
32.赵楠,杨瑞杰,王俊杰.热释光探测器的剂量学特性研究.中华放射医学与防护杂志,2015,35(9):696-699.
33.霍小东,郑广钧,柴树德,等.CT引导下125I放射性粒子植入治疗Ⅲ期非小细胞肺癌疗效分析.中华放射医学与防护杂志,2012,32(2):199-203.
34.Jiang P,Liu C,Wang J,et al.Computed tomography(CT)-guided interstitial permanent implantation of(125)I seeds for refractory chest wall metastasis or recurrence.Technol Cancer Res Treat.2015,14(1):11-18.
35.江萍,王俊杰,柳晨,等.转移胸壁肿瘤CT引导125I粒子治疗疗效初探.中华放射肿瘤学杂志,2013,22(3):209-212.
36.赵楠,杨瑞杰,王俊杰.125I放射性粒子植入计划定制研究.中华放射医学与防护杂志,2014,34(1):54-58.
37.杨瑞杰,王俊杰.放射性粒子植入计划系统剂量计算准确性验证.中华放射医学与防护杂志,2011,31(4):493-495.
38.杨瑞杰,姜玉良,李金娜,等.复发性直肠癌CT引导125I粒子植入的剂量学验证.中国肿瘤,2009,8(10):848-850.