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欧洲同步辐射装置中微束放射治疗的MOSFET剂量测定法

MOSFET dosimetry for microbeam radiation therapy at the European Synchrotron Radiation Facility.

作者信息

Bräuer-Krisch E, Bravin A, Lerch M, Rosenfeld A, Stepanek J, Di Michiel M, Laissue J A

机构信息

European Synchrotron Radiation Facility, B.P. 220, 38043 Grenoble, France.

出版信息

Med Phys. 2003 Apr;30(4):583-9. doi: 10.1118/1.1562169.

Abstract

Preclinical experiments are carried out with approximately 20-30 microm wide, approximately 10 mm high parallel microbeams of hard, broad-"white"-spectrum x rays (approximately 50-600 keV) to investigate microbeam radiation therapy (MRT) of brain tumors in infants for whom other kinds of radiotherapy are inadequate and/or unsafe. Novel physical microdosimetry (implemented with MOSFET chips in the "edge-on" mode) and Monte Carlo computer-simulated dosimetry are described here for selected points in the peak and valley regions of a microbeam-irradiated tissue-equivalent phantom. Such microbeam irradiation causes minimal damage to normal tissues, possible because of rapid repair of their microscopic lesions. Radiation damage from an array of parallel microbeams tends to correlate with the range of peak-valley dose ratios (PVDR). This paper summarizes comparisons of our dosimetric MOSFET measurements with Monte Carlo calculations. Peak doses at depths <22 mm are 18% less than Monte Carlo values, whereas those depths >22 mm and valley doses at all depths investigated (2 mm-62 mm) are within 2-13% of the Monte Carlo values. These results lend credence to the use of MOSFET detector systems in edge-on mode for microplanar irradiation dosimetry.

摘要

临床前实验采用约20 - 30微米宽、约10毫米高的平行硬宽“白色”光谱x射线微束(约50 - 600 keV)进行,以研究针对其他放疗方式不充分和/或不安全的婴儿脑肿瘤的微束放射治疗(MRT)。本文描述了在微束辐照的组织等效体模的峰值和谷值区域的选定位置采用新型物理微剂量测定法(以“边缘入射”模式的MOSFET芯片实现)和蒙特卡罗计算机模拟剂量测定法。这种微束辐照对正常组织造成的损伤最小,这可能是因为其微观损伤能快速修复。平行微束阵列造成的辐射损伤往往与峰谷剂量比(PVDR)范围相关。本文总结了我们的微剂量MOSFET测量结果与蒙特卡罗计算结果的比较。深度<22毫米处的峰值剂量比蒙特卡罗值低18%,而深度>22毫米处的峰值剂量以及所有研究深度(2毫米 - 62毫米)处的谷值剂量在蒙特卡罗值的2% - 13%范围内。这些结果为在边缘入射模式下使用MOSFET探测器系统进行微平面辐照剂量测定提供了可信度。

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