Suppr超能文献

准直光子束与放射治疗患者身体相互作用产生的有害光子和中子辐射。

Unwanted photon and neutron radiation resulting from collimated photon beams interacting with the body of radiotherapy patients.

作者信息

Ing H, Nelson W R, Shore R A

出版信息

Med Phys. 1982 Jan-Feb;9(1):27-33. doi: 10.1118/1.595137.

Abstract

Monte Carlo calculations have been made to determine the energies delivered by photons and neutrons to the human body irradiated by collimated photon beams. The beams were monoenergetic and ranged from 100 keV to 40 MeV. The energy deposition in the body was sorted into two regions: inside and outside the irradiated volume. Most of the results obtained were for a beam size of 100 cm2 although some calculations were also made to 600 cm2 beams. The effect of beam size on energy deposition in the two regions was investigated for 60Co gamma rays. Graphs are presented which give the integral doses delivered by neutrons and photons to the two regions for therapy beams of various energies. These graphs can be used to calculate the integral doses which are delivered inside and outside the treatment volume for photon spectra from most medical accelerators. Calculations of energy deposition were also made for the spectra from two particular accelerators. These were done using Monte Carlo as well as by simply "folding" the spectra into the results for monoenergetic photons. The results obtained by both methods were in good agreement and indicated that the integral doses deposited outside the treatment volume by neutrons are more than two orders of magnitude smaller than those deposited by scattered photons.

摘要

已进行蒙特卡罗计算,以确定准直光子束照射人体时,光子和中子传递给人体的能量。这些光束是单能的,能量范围从100keV到40MeV。体内的能量沉积被分为两个区域:照射体积内部和外部。获得的大多数结果是针对100平方厘米的光束尺寸,不过也对600平方厘米的光束进行了一些计算。针对60Co伽马射线,研究了光束尺寸对两个区域能量沉积的影响。给出的图表显示了不同能量治疗光束中中子和光子传递给两个区域的积分剂量。这些图表可用于计算大多数医用加速器光子谱在治疗体积内部和外部传递的积分剂量。还针对两种特定加速器的能谱进行了能量沉积计算。这些计算既使用了蒙特卡罗方法,也通过简单地将能谱“折叠”到单能光子的结果中进行。两种方法获得的结果吻合良好,表明中子在治疗体积外部沉积的积分剂量比散射光子沉积的积分剂量小两个数量级以上。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验