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Dynamic 3D measurement of modulated radiotherapy: a scintillator-based approach

机译:调制放射治疗的动态3D测量:基于闪烁体的方法

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With the rise of high-conformity dynamic radiotherapy, such as volumetric modulated arc therapy and robotic radiosurgery, the temporal dimension of dose measurement is becoming increasingly important. It must be possible to tell both 'where' and 'when' a discrepancy occurs between the plan and its delivery. A 3D scintillation-based dosimetry system could be ideal for such a thorough, end-to-end verification; however, the challenge lies in retrieving the volumetric information of the light-emitting volume. This paper discusses the motivation, from an optics point of view, of using the images acquired with a plenoptic camera, or light field imager, of an irradiated plastic scintillator volume to reconstruct the delivered 3D dose distribution. Current work focuses on the optimization of the optical design as well as the data processing that is involved in the ongoing development of a clinically viable, second generation dosimetry system.
机译:随着高符合性的动态放射疗法的兴起,如体积调制的电弧治疗和机器人放射外科,剂量测量的时间尺寸变得越来越重要。必须可以告诉“在”计划之间发生差异“和”当“差异”及其交付之间进行差异。基于3D闪烁的剂量测定系统可能是如此彻底,端到端验证的理想选择;然而,挑战在于检索发光体积的体积信息。本文讨论了使用用通风摄像机或光场成像器获取的辐照塑料闪烁体积的光学视点来重建传递的3D剂量分布的动机。目前的工作侧重于光学设计的优化以及涉及临床可行,第二代剂量测定系统的持续发展的数据处理。

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