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使温度预测适应治疗体位下的磁共振成像,以改善宫颈癌的模拟引导热疗

Adapting Temperature Predictions to MR Imaging in Treatment Position to Improve Simulation-Guided Hyperthermia for Cervical Cancer.

作者信息

VilasBoas-Ribeiro Iva, Sumser Kemal, Nouwens Sven, Feddersen Theresa, Heemels W P M H, van Rhoon Gerard C, Paulides Margarethus M

机构信息

Department of Radiotherapy, Erasmus MC Cancer InstituteUniversity Medical Center Rotterdam 3015GD Rotterdam The Netherlands.

Care and Cure research lab (EM-4C&C) of the Electromagnetics Group, Department of Electrical EngineeringEindhoven University of Technology 5600 MB Eindhoven The Netherlands.

出版信息

IEEE Open J Eng Med Biol. 2023 Oct 9;5:99-106. doi: 10.1109/OJEMB.2023.3321990. eCollection 2024.

Abstract

Hyperthermia treatment consists of elevating the temperature of the tumor to increase the effectiveness of radiotherapy and chemotherapy. Hyperthermia treatment planning (HTP) is an important tool to optimize treatment quality using pre-treatment temperature predictions. The accuracy of these predictions depends on modeling uncertainties such as tissue properties and positioning. In this study, we evaluated if HTP accuracy improves when the patient is imaged inside the applicator at the start of treatment. Because perfusion is a major uncertainty source, the importance of accurate treatment position and anatomy was evaluated using different perfusion values. Volunteers were scanned using MR imaging without ("planning setup") and with the MR-compatible hyperthermia device ("treatment setup"). Temperature-based quality indicators were used to assess the differences between the standard, apparent and the optimized hyperthermia dose. We conclude that pre-treatment imaging can improve HTP predictions accuracy but also, that tissue perfusion modelling is crucial if temperature-based optimization is applied.

摘要

热疗是通过提高肿瘤温度来增强放疗和化疗的效果。热疗治疗计划(HTP)是利用治疗前温度预测来优化治疗质量的重要工具。这些预测的准确性取决于诸如组织特性和定位等建模不确定性因素。在本研究中,我们评估了在治疗开始时患者在施源器内成像时,HTP的准确性是否会提高。由于灌注是一个主要的不确定性来源,我们使用不同的灌注值评估了精确治疗位置和解剖结构的重要性。志愿者在未使用磁共振兼容热疗设备(“计划设置”)和使用该设备(“治疗设置”)的情况下进行了磁共振成像扫描。基于温度的质量指标用于评估标准、表观和优化热疗剂量之间的差异。我们得出结论,治疗前成像可以提高HTP预测的准确性,而且,如果应用基于温度的优化,组织灌注建模至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7e5/10914156/74f0d967b549/vilas1-3321990.jpg

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