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一种用于测量鼻胆管高剂量率近距离放射治疗后装治疗机性能和传输剂量的质量保证装置。

A quality assurance device for measuring afterloader performance and transit dose for nasobiliary high-dose-rate brachytherapy.

作者信息

Deufel Christopher L, Mullins John P, Zakhary Mark J

机构信息

Department of Radiation Oncology, Mayo Clinic, Rochester, MN.

Department of Radiation Oncology, Mayo Clinic, Rochester, MN.

出版信息

Brachytherapy. 2018 Jul-Aug;17(4):726-731. doi: 10.1016/j.brachy.2018.03.005. Epub 2018 May 17.

DOI:10.1016/j.brachy.2018.03.005
PMID:29779953
Abstract

PURPOSE

Nasobiliary high-dose-rate (HDR) brachytherapy has emerged as an effective tool to boost the radiation dose for patients with unresectable perihilar cholangiocarcinoma. This work describes a quality assurance (QA) tool for measuring the HDR afterloader's performance, including the transit dose, when the source wire travels through a tortuous nasobiliary catheter path.

METHODS AND MATERIALS

The nasobiliary QA device was designed to mimic the anatomical path of a nasobiliary catheter, including the nasal, stomach, duodenum, and bile duct loops. Two of these loops, the duodenum and bile duct loops, have adjustable radii of curvature, resulting in the ability to maximize stress on the source wire in transit. The device was used to measure the performance over time for the HDR afterloader and the differences between intraluminal catheter lots. An upper limit on the transit dose was also measured using radiochromic film and compared with a simple theoretical model.

RESULTS

The QA device was capable of detecting performance variations among nasobiliary catheter lots and following radioactive source replacement. The transit dose from a nasobiliary treatment increased by up to one order of magnitude when the source wire encountered higher than normal friction. Three distinct travel speeds of the source wire were observed: 5.2, 17.4, and 54.7 cm/s. The maximum transit dose was 0.3 Gy at a radial distance of 5 mm from a 40.3 kU Ir source.

CONCLUSIONS

The source wire encounters substantially greater friction when it navigates through the nasobiliary brachytherapy catheter. A QA tool that mimics the nasal, stomach, duodenum, and bile duct loops may be used to evaluate transit dose and the afterloader's performance over time.

摘要

目的

鼻胆管高剂量率(HDR)近距离放射治疗已成为提高不可切除肝门部胆管癌患者放射剂量的有效工具。本文介绍一种用于测量HDR后装治疗机性能的质量保证(QA)工具,包括源导线穿过曲折鼻胆管导管路径时的传输剂量。

方法和材料

鼻胆管QA装置设计用于模拟鼻胆管导管的解剖路径,包括鼻腔、胃、十二指肠和胆管环。其中两个环,十二指肠环和胆管环,具有可调节的曲率半径,从而能够使源导线在传输过程中所受应力最大化。该装置用于测量HDR后装治疗机随时间的性能以及腔内导管批次之间的差异。还使用放射变色胶片测量了传输剂量的上限,并与一个简单的理论模型进行了比较。

结果

该QA装置能够检测鼻胆管导管批次之间以及更换放射源后的性能变化。当源导线遇到高于正常的摩擦力时,鼻胆管治疗的传输剂量增加高达一个数量级。观察到源导线有三种不同的行进速度:5.2、17.4和54.7厘米/秒。在距40.3千居里铱源径向距离5毫米处,最大传输剂量为0.3戈瑞。

结论

源导线在通过鼻胆管近距离放射治疗导管时会遇到大得多的摩擦力。一种模拟鼻腔、胃、十二指肠和胆管环的QA工具可用于评估传输剂量和后装治疗机随时间的性能。

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