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SU-E-T-272:调试用于放射生物学研究的深部X线治疗机。

SU-E-T-272: Commissioning an Orthovoltage Unit Used for Radiobiology Research.

作者信息

Azimi R, Alaei P, Hui S

机构信息

University Minnesota, Minneapolis, MN.

出版信息

Med Phys. 2012 Jun;39(6Part14):3766. doi: 10.1118/1.4735339.

Abstract

PURPOSE

Orthovoltage X-ray units are used to irradiate cell cultures or small animals in research. Beam characteristics of these units are often not well understood and only nominal dose specified is used by researchers in their studies. This work describes commissioning of an orthovoltage unit similar to that of a linear accelerator.

METHODS

The X-Rad 320 Orthovoltage unit is a self-contained x-ray system which can be operatedwithin a wide range of kVp and mAs settings. This work characterizes the beam produced by this system. Various beam data, including depth dose, cross profiles, collimator and total scatter factors, have been measured. Collimator and total scatter measurements were done with cylindrical farmer chambers (0.6 cc and 0.057 cc volumes) for field sizes ranging from 2×2 to 20×20 cm . Sc measurements were done in air at 50 cm SCD and Sc,p measurements were done in 2 cm depth of phantom at 50 cm SSD.The depth dose curves were generated for three different field sizes for depths up to 15 cm. A parallel plate chamber was used for surface and near surface dose measurements while the cylindrical chamber was used for other depths.

RESULTS

Measurements of Sc and Sc,p indicate minimal variation of these factors with field size, except for very small fields. The results of depth dose measurements produce results comparable with published data for similar beams and indicate a very small dose buildup at shallow depths.

CONCLUSIONS

Proper characterization of an x-ray beam and accurate dosimetry is of importance in radiobiology investigations which may lead to advent of new therapies for humans. This work investigates the beam characteristics of an orthovoltage unit to ensure accurate irradiation of samples. The data collected here could further be used for simulation of dose distribution within irradiated volume.

摘要

目的

在研究中,正交电压X射线装置用于照射细胞培养物或小动物。这些装置的射束特性往往未被充分了解,研究人员在其研究中仅使用规定的标称剂量。本研究描述了一台类似于直线加速器的正交电压装置的调试过程。

方法

X-Rad 320正交电压装置是一个独立的X射线系统,可在很宽的千伏峰值(kVp)和毫安秒(mAs)设置范围内运行。本研究对该系统产生的射束进行了特性描述。已测量了各种射束数据,包括深度剂量、交叉剖面、准直器和总散射因子。准直器和总散射测量使用圆柱形电离室(体积分别为0.6 cc和0.057 cc),测量的射野尺寸范围为2×2至20×20 cm 。在源皮距(SCD)为50 cm的空气中进行总散射因子(Sc)测量,在源轴距(SSD)为50 cm、模体深度2 cm处进行体模内总散射因子(Sc,p)测量。针对三种不同射野尺寸,生成了深度达15 cm的深度剂量曲线。表面和近表面剂量测量使用平行板电离室,其他深度剂量测量使用圆柱形电离室。

结果

Sc和Sc,p测量结果表明,除了非常小的射野外,这些因子随射野尺寸的变化极小。深度剂量测量结果与类似射束的已发表数据相当,表明在浅深度处剂量积累非常小。

结论

在放射生物学研究中,对X射线射束进行恰当的特性描述和准确的剂量测定非常重要,这可能会带来新的人类治疗方法。本研究调查了正交电压装置的射束特性,以确保对样品进行准确照射。此处收集的数据可进一步用于模拟照射体积内的剂量分布。

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