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高剂量率远程后装治疗中从铯-137转换为铱-192:实际考量

Conversion from Cs-137 to Ir-192 for high dose rate remote afterloading: practical considerations.

作者信息

Bellotti J E, Kagan A R, Olch A, Wollin M

机构信息

Department of Radiation Oncology, Southern California Permanente Medical Group, Los Angeles 90027.

出版信息

Med Phys. 1992 Mar-Apr;19(2):377-83. doi: 10.1118/1.596870.

Abstract

High dose rate (HDR) remote afterloading is increasingly being used to replace many conventional low dose rate (LDR) brachytherapy procedures. Implementation of the microSelectron-HDR with Ir-192 at our facility necessitated this study to obtain equivalent dosimetric distributions with those of our LDR Cs-137 techniques using our current treatment planning system. Three anatomical sites are presented: nasopharynx, esophagus, and uterine cervix. Attention must be given to the anisotropy of Cs-137 tubes when converting to Ir-192; for linear geometries, total equivalent activity may be preserved but the shapes of the resulting isodose curves for Ir-192 are longer than those of Cs-137. In the case of Fletcher-Suit intracavitary treatments of the uterine cervix, the longer contours for Ir-192 in the vaginal ovoids results in higher isodose levels reaching the bladder and rectum. Maintaining the traditional dose levels to these organs is accomplished by modifying the loading of the ovoids to approximately 85% of the corresponding Cs-137 activity. Computerized dosimetry is presented, along with a chart we have devised to easily convert a standard LDR treatment to HDR dwell times. Our results are especially suitable to those users who will continue to make use of their present computer treatment planning system.

摘要

高剂量率(HDR)远程后装治疗正越来越多地用于取代许多传统的低剂量率(LDR)近距离放射治疗程序。在我们的机构中使用带有铱 - 192的microSelectron - HDR,使得有必要进行这项研究,以便使用我们当前的治疗计划系统获得与我们的LDR铯 - 137技术等效的剂量分布。本文展示了三个解剖部位:鼻咽、食管和子宫颈。在转换为铱 - 192时必须注意铯 - 137管的各向异性;对于线性几何形状,总等效活度可以保持,但铱 - 192产生的等剂量曲线形状比铯 - 137的更长。在子宫颈的Fletcher - Suit腔内治疗中,阴道卵形容器中铱 - 192的较长轮廓导致到达膀胱和直肠的等剂量水平更高。通过将卵形容器的加载量修改为相应铯 - 137活度的约85%来维持对这些器官的传统剂量水平。本文展示了计算机剂量测定法,以及我们设计的一个图表,用于轻松将标准LDR治疗转换为HDR驻留时间。我们的结果特别适合那些将继续使用其现有计算机治疗计划系统的用户。

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