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先进的个体化热疗治疗计划。

Advanced patient-specific hyperthermia treatment planning.

机构信息

Department of Radiotherapy, University Medical Center Utrecht, Utrecht, The Netherlands.

Amsterdam UMC, Department of Radiation Oncology, Cancer Center Amsterdam, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Int J Hyperthermia. 2020;37(1):992-1007. doi: 10.1080/02656736.2020.1806361.

Abstract

Hyperthermia treatment planning (HTP) is valuable to optimize tumor heating during thermal therapy delivery. Yet, clinical hyperthermia treatment plans lack quantitative accuracy due to uncertainties in tissue properties and modeling, and report tumor absorbed power and temperature distributions which cannot be linked directly to treatment outcome. Over the last decade, considerable progress has been made to address these inaccuracies and therefore improve the reliability of hyperthermia treatment planning. Patient-specific electrical tissue conductivity derived from MR measurements has been introduced to accurately model the power deposition in the patient. Thermodynamic fluid modeling has been developed to account for the convective heat transport in fluids such as urine in the bladder. Moreover, discrete vasculature trees have been included in thermal models to account for the impact of thermally significant large blood vessels. Computationally efficient optimization strategies based on SAR and temperature distributions have been established to calculate the phase-amplitude settings that provide the best tumor thermal dose while avoiding hot spots in normal tissue. Finally, biological modeling has been developed to quantify the hyperthermic radiosensitization effect in terms of equivalent radiation dose of the combined radiotherapy and hyperthermia treatment. In this paper, we review the present status of these developments and illustrate the most relevant advanced elements within a single treatment planning example of a cervical cancer patient. The resulting advanced HTP workflow paves the way for a clinically feasible and more reliable patient-specific hyperthermia treatment planning.

摘要

热疗治疗计划(HTP)对于优化热疗过程中的肿瘤加热非常有价值。然而,由于组织特性和建模中的不确定性,临床热疗治疗计划缺乏定量准确性,并且报告的肿瘤吸收功率和温度分布不能直接与治疗效果相关联。在过去的十年中,已经取得了相当大的进展来解决这些不准确性,从而提高热疗治疗计划的可靠性。已经引入了从磁共振测量中获得的患者特异性电组织电导率,以准确地对患者体内的功率沉积进行建模。已经开发了热力学流体模型来解释诸如膀胱中的尿液等流体中的对流热传递。此外,已经在热模型中包含了离散的脉管树,以解释热重要的大血管的影响。已经建立了基于 SAR 和温度分布的计算效率优化策略,以计算提供最佳肿瘤热剂量同时避免正常组织热点的相位-幅度设置。最后,已经开发了生物建模来根据联合放射治疗和热疗治疗的等效辐射剂量来量化热增敏的放射生物学效应。在本文中,我们回顾了这些进展的现状,并在单个宫颈癌患者的治疗计划示例中说明了最相关的高级元素。由此产生的高级 HTP 工作流程为临床可行且更可靠的患者特异性热疗治疗计划铺平了道路。

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