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直立式粒子治疗患者定位及相关图像引导的注意事项

Considerations for Upright Particle Therapy Patient Positioning and Associated Image Guidance.

作者信息

Volz Lennart, Sheng Yinxiangzi, Durante Marco, Graeff Christian

机构信息

Biophysics, GSI Helmholtz Center for Heavy Ion Research GmbH, Darmstadt, Germany.

Department of Medical Physics, Shanghai Proton and Heavy Ion Center, Shanghai, China.

出版信息

Front Oncol. 2022 Jul 29;12:930850. doi: 10.3389/fonc.2022.930850. eCollection 2022.

Abstract

Particle therapy is a rapidly growing field in cancer therapy. Worldwide, over 100 centers are in operation, and more are currently in construction phase. The interest in particle therapy is founded in the superior target dose conformity and healthy tissue sparing achievable through the particles' inverse depth dose profile. This physical advantage is, however, opposed by increased complexity and cost of particle therapy facilities. Particle therapy, especially with heavier ions, requires large and costly equipment to accelerate the particles to the desired treatment energy and steer the beam to the patient. A significant portion of the cost for a treatment facility is attributed to the gantry, used to enable different beam angles around the patient for optimal healthy tissue sparing. Instead of a gantry, a rotating chair positioning system paired with a fixed horizontal beam line presents a suitable cost-efficient alternative. Chair systems have been used already at the advent of particle therapy, but were soon dismissed due to increased setup uncertainty associated with the upright position stemming from the lack of dedicated image guidance systems. Recently, treatment chairs gained renewed interest due to the improvement in beam delivery, commercial availability of vertical patient CT imaging and improved image guidance systems to mitigate the problem of anatomical motion in seated treatments. In this review, economical and clinical reasons for an upright patient positioning system are discussed. Existing designs targeted for particle therapy are reviewed, and conclusions are drawn on the design and construction of chair systems and associated image guidance. Finally, the different aspects from literature are channeled into recommendations for potential upright treatment layouts, both for retrofitting and new facilities.

摘要

粒子疗法是癌症治疗领域中一个迅速发展的领域。在全球范围内,有100多个中心正在运营,目前还有更多中心处于建设阶段。对粒子疗法的兴趣源于粒子的反向深度剂量分布能够实现卓越的靶区剂量适形性并减少对健康组织的照射。然而,这种物理优势被粒子疗法设施的复杂性增加和成本上升所抵消。粒子疗法,尤其是重离子疗法,需要大型且昂贵的设备来将粒子加速到所需的治疗能量,并将束流导向患者。治疗设施成本的很大一部分归因于龙门架,它用于围绕患者实现不同的束流角度,以实现对健康组织的最佳保护。与龙门架不同,旋转椅定位系统与固定的水平束流线相结合,是一种合适且经济高效的替代方案。在粒子疗法出现之初就已经使用了椅子系统,但由于缺乏专用图像引导系统,直立姿势带来的设置不确定性增加,这些系统很快就被摒弃了。最近,由于束流输送的改进、垂直患者CT成像的商业可用性以及改进的图像引导系统以减轻坐姿治疗中解剖运动的问题,治疗椅重新引起了人们的兴趣。在这篇综述中,讨论了采用直立患者定位系统的经济和临床原因。对针对粒子疗法的现有设计进行了综述,并就椅子系统及其相关图像引导的设计和构建得出了结论。最后,将文献中的不同方面归纳为针对潜在直立治疗布局的建议,适用于改造和新建设施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9b5/9372451/3025e499597f/fonc-12-930850-g001.jpg

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