Absorbed dose rate measurements of a 50 kV(p) handheld X-ray probe source in a water phantom are described. The X-ray generator is capable of currents of up to 40 microA, and is designed for cranial brachytherapy and intraoperative applications with applicators. The measurements were performed in a computer-controlled water phantom in which both the source and the detectors are mounted. Two different LiF thermoluminescence dosemeter (TLD) phosphors were employed for the measurements, MTS-N (LiF:Mg,Ti) and MCP-N (LiF:Mg,Cu,P). Two small ionisation chambers (0.02 and 0.0053 cm(3)) were also employed. The TLDs and chambers were positioned in watertight mounts made of water-equivalent plastic. The chambers were calibrated in terms of air-kerma rate, and conventional protocols were used to convert the measurements to absorbed dose rate. The TLDs were calibrated at National Institute of Standards and Technology (NIST) in terms of absorbed dose rate using a (60)Co teletherapy beam and narrow-spectrum X-ray beams. For the latter, absorbed dose was inferred from air-kerma rate using calculated air-kerma-to-dose conversion factors. The reference points of the various detectors were taken as the center of the TLD volumes and the entrance windows of the ionisation chambers. Measurements were made at distances of 3-45 mm from the detector reference point to the source center. In addition, energy dependence of response measurements of the TLDs used was made using NIST reference narrow spectrum X-ray beams. Measurement results showed reasonable agreement in absorbed dose rate determined from the energy dependence corrected TLD readings and from the ionisation chambers. Volume averaging effects of the TLDs at very close distances to the source were also evident.

译文

描述了水模中50 kV(p) 手持式x射线探针源的吸收剂量率测量。X射线发生器能够高达40 microA的电流,并设计用于颅骨近距离放射治疗和术中应用与应用程序。测量是在计算机控制的水模中进行的,其中安装了源和检测器。使用两种不同的LiF热发光剂量计 (TLD) 荧光粉进行测量,mts-n (LiF:Mg,Ti) 和mcp-n (LiF:Mg,Cu,P)。还使用了两个小的电离室 (0.02和0.0053厘米 (3))。Tld和腔室放置在由水当量塑料制成的水密支架中。根据空气-比速率对腔室进行了校准,并使用常规协议将测量值转换为吸收剂量率。使用 (60)Co远程治疗束和窄光谱x射线束,根据吸收剂量率在美国国家标准技术研究院 (NIST) 对tld进行了校准。对于后者,使用计算出的空气-比剂量转换因子从空气-比速率推断吸收剂量。各种检测器的参考点被视为TLD体积的中心和电离室的入口窗口。在从检测器参考点到源中心的3-45毫米的距离处进行测量。此外,使用NIST参考窄光谱x射线束对所使用的tld响应测量的能量依赖性进行了测量。测量结果显示,根据能量依赖性校正的TLD读数和电离室确定的吸收剂量率合理一致。距源非常近的tld的体积平均效果也很明显。

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