期刊文献+

重离子在生物组织中的阻止本领 被引量:2

Stopping Power of Heavy Ions in Human Body Tissue
在线阅读 下载PDF
导出
摘要 根据中能重离子与靶物质相互作用的特点,将参数化的阻止本领计算方法进行了改进和推广,给出了计算重离子在人体组织及生物等效介质中阻止本领的方法。作为带电离子适形放疗的基础,计算了中能碳离子在肌肉、骨胳、脂肪、水及其他生物等效介质中的阻止本领,B ragg峰、射程等参量,并对计算方法的可靠性及在临床肿瘤治疗剂量控制方面的应用进行了分析。参数化的计算方法能满足实际应用的要求。 In charged particle conformal radiotherapy, the energy deposition in the tumour area of the heavy ion beam is controlled by the energy range, energy straggling and the Bragg peak. A parameterized formula is developed to calculate stopping power values for heavy ions, such as ^12C in human tissue and tissue equivalent materials with the uncertainty about 3 %. The ranges and stopping powers for ^12C in bone, fat, muscle, water and tissue equivalent materials, polyethylene, lucite and polystyrene, are cal- culated. The energy-range relation in the muscle for ^12C is obtained. The energy straggling and angular straggling for ^12C in the muscle increase when the energy loss increases. The conformity of the energy deposition in the cancer therapy is discussed.
出处 《南京航空航天大学学报》 EI CAS CSCD 北大核心 2005年第5期557-561,共5页 Journal of Nanjing University of Aeronautics & Astronautics
关键词 重离子治疗 阻止本领 射程 人体组织 heavy ion radiotherapy stopping power range human tissue
  • 相关文献

参考文献9

  • 1魏志勇,段利敏,吴和宇,靳根明,李祖玉,张保国,王宏伟,肖志刚,柳永英,王素芳,诸永泰,胡荣江.半导体探测器的厚度确定及CsI(Tl)的刻度[J].核技术,2001,24(6):468-472. 被引量:4
  • 2Lindhard J, Scharff S. Energy dissipation by ions in the kev region [J]. Phys Rev,1961,(124):128~130.
  • 3Richard P. Methods of experimental physics[M].New York: Academic Press Inc, 1980.23~55.
  • 4Grosswendt B. Formation of ionization clusters in nanometric structures of propane-based tissue-equivalent gas or liquid water by electrons and α-particles[J]. Radiat Environ Biophys, 2002, (41) : 103~ 108.
  • 5Bauer P, Semrad D. How to predict physical and chemical state effects in electronic stopping[J]. Nucl Instr Meth,2001, (B1.82) :62~66.
  • 6Vukanic J, Hadzievski L. Reflection coefficient of low-energy ions as a universal function of the scaled transport cross section [J]. Appl Phys A, 2000,(71):95~99.
  • 7Northcliffe L C,Schilling R F. Nucl. data tables (A7)[M]. New York: Academic Press Inc,1970. 233.
  • 8Ziegler J F. Handbook of range distribution for energetic ions in all elements[M]. New York :Pergamon Press Inc,1980. 107~123.
  • 9Hubert F, Bimbot R, Gauvin H, Atom nucl. data tables [M]. New York: Academic Press Inc, 1990.113.

二级参考文献2

共引文献3

同被引文献16

  • 1方美华,魏志勇,陈达.高能α粒子辐射屏蔽的蒙特卡罗模拟[J].核技术,2007,30(4):306-309. 被引量:3
  • 2祁章年.载人航天的辐射防护与监测[M].北京:国防工业出版社,2003.12-36.
  • 3Cucinotta F A, Wu Honglu, Shavers M R, et al.Gravitational and Space Biology Bulletin, 2003, 16(2) :11-18.
  • 4Clowdsley M S, Angelis G De. AIAA-2002-6216.
  • 5Stekl L, Pospisil S, Kovalenko V E, et al. Nucl Instr Meth 2000, A452:458-469.
  • 6Harris C E, Dicus D L, Shuart M J. AIAA-2001-4679.
  • 7Wilson J W, Shinn J L, Tripathi R K, et al. Acta Astronautica, 2001, 49: (3-10), pp289-312.
  • 8王同权.高能质子辐射效应研究.国防科学技术大学研究生院,2003,p1-126.
  • 9Wilson J W, Miller J, Konradi A, et al. Shielding Strategies for Human Space Exploration. NASA Conference Publication 3360, 1997, p1-439.
  • 10Wilson J W, Glaessgen E H, Jensen B, et al. AIAA 2003-6258, 2003 ,p1-9.

引证文献2

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部