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评估空间分割放射治疗中的剂量学进展:从栅格到晶格。

Assessing dosimetric advancements in spatially fractionated radiotherapy: From grids to lattices.

机构信息

Vellore Institute of Technology, Vellore Campus, Katpadi, Tamil Nadu 500036, India; American Oncology Institute at Baby Memorial Hospital, Kozhikode, Kerala 673004, India.

Vellore Institute of Technology, Vellore Campus, Katpadi, Tamil Nadu 500036, India.

出版信息

Med Dosim. 2024;49(3):206-214. doi: 10.1016/j.meddos.2023.12.003. Epub 2024 Jan 29.

Abstract

Spatially fractionated radiotherapy (SFRT) techniques have undergone transformative evolution, encompassing physical GRID therapy, MLC-based grids, virtual TOMO GRIDs, and 3-dimensional high-dose lattices. Historical roots trace back to Alban Köhler's pioneering Spatially fractionated grid therapy (SFGRT), utilizing physical grids for dose modulation. Technological innovations introduced multi-leaf collimators (MLCs), enabling adaptable spatial fractionation and a shift to the broader term "SFRT." Physics and dosimetry-based studies have demonstrated the feasibility of computerized treatment planning and identified the potential to minimize the peripheral dose while using such high-dose therapy. Meanwhile, 3-dimensional high-dose lattices showed enhanced precision. The meticulous placement of high-dose volumetric spheres enables a reduction in the volume of high-dose spills. Advancements in 3-dimensional lattices through intensity-modulated radiotherapy and volumetric modulated arc therapy (VMAT) techniques offer enhanced therapeutic options. A database of SFRT studies identified 723 articles. This review shows the trajectory of SFRT from traditional grids to MLC-based approaches, virtual TOMO GRIDs, and innovative 3-dimensional lattices. Technological innovations, dosimetric advancements, and clinical feasibility have underscored the continual progress in refining spatially fractionated radiotherapy. The integration of MLCs and lattice techniques has demonstrated improved therapeutic outcomes, solidifying their relevance in modern radiation therapy protocols. Research has yet to reveal a clear correlation between treatment outcomes and dosimetric parameters. Additional investigations are necessary to assess the impact of various dosimetric parameters, such as EUD, peak-to-valley ratio (PVDR), D5%, D10%, D20%, D90%, etc., on the effectiveness of treatments.

摘要

空间分割放疗 (SFRT) 技术经历了变革性的发展,包括物理栅格治疗、基于多叶准直器的栅格、虚拟断层放疗 (TOMO) 栅格和 3 维高剂量栅格。历史根源可以追溯到 Alban Köhler 的开创性的空间分割网格治疗 (SFGRT),利用物理栅格进行剂量调制。技术创新引入了多叶准直器 (MLC),实现了可适应的空间分割,并将其更名为“SFRT”。基于物理学和剂量学的研究已经证明了计算机化治疗计划的可行性,并确定了使用这种高剂量治疗的同时最小化周边剂量的潜力。同时,3 维高剂量栅格显示出更高的精度。通过精心放置高剂量容积球,可以减少高剂量溢出的体积。通过强度调制放疗和容积旋转调强放疗 (VMAT) 技术的 3 维栅格的进步提供了增强的治疗选择。SFRT 研究数据库确定了 723 篇文章。本综述展示了 SFRT 从传统栅格到基于 MLC 的方法、虚拟断层放疗栅格以及创新的 3 维栅格的发展轨迹。技术创新、剂量学进展和临床可行性强调了空间分割放疗的持续改进。MLC 和栅格技术的结合已经证明了改善治疗效果,巩固了它们在现代放射治疗方案中的相关性。研究尚未揭示治疗结果和剂量学参数之间的明确相关性。需要进一步的研究来评估各种剂量学参数,如 EUD、峰谷比 (PVDR)、D5%、D10%、D20%、D90% 等,对治疗效果的影响。

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