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用于临床剂量测定的屏蔽液体电离室的研制。

Development of a guarded liquid ionization chamber for clinical dosimetry.

作者信息

Stewart K J, Elliott A, Seuntjens J P

机构信息

Medical Physics Unit, Montreal General Hospital, Montreal, Canada.

出版信息

Phys Med Biol. 2007 Jun 7;52(11):3089-104. doi: 10.1088/0031-9155/52/11/011. Epub 2007 May 10.

Abstract

Liquid ionization chambers are considered superior to air-filled chambers in terms of size, energy dependence and perturbation effects. We constructed and tested a liquid ionization chamber for clinical dosimetry, the GLIC-03, with a sensitive volume of approximately 2 mm3. We also examined two methods to correct for general ion recombination in pulsed photon beams: that of Johansson et al, which modifies Boag's theory for recombination in gases, and an empirical method relating recombination to dose per pulse. The second method can be used even in cases where the first method is not applicable. The response of the GLIC-03 showed a stable, linear and reproducible decrease of 1% over 10 h. The liquid-filled GLIC-03 had a 1.1 +/- 0.4% energy dependence while that of the air-filled GLIC-03 was 2.1 +/- 0.3% between the 6 and 18 MV beams from a Clinac 21EX. The two methods for recombination correction agreed within 0.2% for measurements at 18 MV, 700 V, 100 MU min(-1). Measurements with the GLIC-03 in Solid Water in the build-up region of an 18 MV beam agreed with extrapolation chamber measurements within 1.4%, indicating that the GLIC-03 causes minimal perturbation.

摘要

在尺寸、能量依赖性和扰动效应方面,液体电离室被认为优于充气电离室。我们构建并测试了一种用于临床剂量测定的液体电离室GLIC - 03,其灵敏体积约为2立方毫米。我们还研究了两种校正脉冲光子束中一般离子复合的方法:一种是约翰松等人提出的方法,该方法修改了博阿格关于气体中复合的理论;另一种是将复合与每脉冲剂量相关联的经验方法。即使在第一种方法不适用的情况下,第二种方法也可以使用。GLIC - 03的响应在10小时内显示出稳定、线性且可重复的1%的下降。在来自瓦里安Clinac 21EX的6至18兆伏射束之间,充液的GLIC - 03的能量依赖性为1.1±0.4%,而充气的GLIC - 03的能量依赖性为2.1±0.3%。在18兆伏、700伏、100监测单位每分钟的测量中,两种复合校正方法的结果在0.2%以内相符。在18兆伏射束的建成区,用GLIC - 03在固体水模体中的测量结果与外推电离室的测量结果在1.4%以内相符,这表明GLIC - 03引起的扰动最小。

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