Toward enhanced quality assurance guidelines for deep hyperthermia devices: a multi-institution study.

IF 3 3区 医学 Q2 ONCOLOGY
International Journal of Hyperthermia Pub Date : 2024-01-01 Epub Date: 2024-12-10 DOI:10.1080/02656736.2024.2436005
Mattia De Lazzari, Carolina Carrapiço-Seabra, Dietmar Marder, Gerard C van Rhoon, Sergio Curto, Hana Dobšíček Trefná
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引用次数: 0

Abstract

Introduction: Hyperthermia efficacy depends on the temperatures achieved in the target area. Therefore, hyperthermia systems must deliver both controlled and conformal heating. This study presents a comprehensive multi-institutional quality assurance (QA) evaluation of deep hyperthermia devices.

Methods: Six European institutions equipped with BSD- Sigma 60 and Sigma Eye deep hyperthermia applicators participated in the study. Up to six measurements per applicator were performed in each institution. The thermal distribution in cylindrical homogeneous phantoms after 10 minutes of heating with a total power delivered of 1000 watts was assessed using the applicator's integrated mapping thermometry system. Evaluated quality parameters included temperature increase, focus location, and focus symmetry.

Results: A total of 54 measurements were conducted, with 43 included in the analysis. All applicators, except one, achieved a temperature increase of 6 °C in 10 minutes. Central heating capabilities were demonstrated, with mean deviations from the intended location of -1.4 ± 1.6 cm for Sigma 60 and 1.5 ± 1.4 cm for Sigma Eye. Symmetry evaluations showed differences in radial temperature profiles of 6.2 ± 4.5 % for the Sigma 60 and 5.9 ± 4.4 % for the Sigma Eye. We propose minimum acceptable values for each quality parameter based on these results.

Conclusion: The measurements were reproducible with acceptable values for the various quality parameters. Potential deviations might be attributed to inaccuracies in the mapping thermometry system rather than the heating system. The presented protocol and practical recommendations should be applied for future QA measurements in deep hyperthermia.

提高深度热疗设备的质量保证指南:一项多机构研究。
热疗的效果取决于目标区域达到的温度。因此,热疗系统必须提供可控和适形加热。本研究提出了一个全面的多机构质量保证(QA)评估深度热疗设备。方法:6家配备BSD- Sigma 60和Sigma眼深部热疗涂布器的欧洲机构参与研究。每个机构的每个涂抹器最多可进行六次测量。在总功率为1000瓦的情况下加热10分钟后,使用涂抹器的集成测温系统评估圆柱形均匀幻象中的热分布。评价的质量参数包括温度升高、焦点位置和焦点对称性。结果:共进行54次测量,其中43次纳入分析。所有的涂抹器,除了一个,在10分钟内实现了6°C的温度升高。中央供暖能力被证明,Sigma 60和Sigma Eye的平均偏差分别为-1.4±1.6 cm和1.5±1.4 cm。对称性评估显示,Sigma 60和Sigma眼的径向温度分布差异分别为6.2±4.5%和5.9±4.4%。我们根据这些结果提出每个质量参数的最小可接受值。结论:测定结果重复性好,各项质量参数值均可接受。潜在的偏差可能是由于测温系统的不精确,而不是由于加热系统。提出的方案和实用建议应应用于未来深度热疗的QA测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.90
自引率
12.90%
发文量
153
审稿时长
6-12 weeks
期刊介绍: The International Journal of Hyperthermia
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