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Performance characterization of a 3D liquid scintillation detector for discrete spot scanning proton beam systems

机译:用于离散点扫描质子束系统的3D液体闪烁检测器的性能表征

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Existing systems for proton beam dosimetry are limited in their ability to provide a complete, accurate, and detailed account of volumetric dose distribution. In this work, we describe the design and development of a portable, fast, and reusable liquid scintillator-based three-dimensional (3D) optical detection system for use in proton therapy. Our long-term goal is to use this system clinically for beam characterization, dosimetry, and quality assurance studies of discrete spot scanning proton beam systems. The system used a 20 x 20 x 20 cm(3) liquid scintillator volume. Three mutually orthogonal cameras surrounding this volume captured scintillation photons emitted in response to the proton beams. The cameras exhibited a mean spatial resolution of 0.21 mm over the complete detection volume and a temporal resolution of 11 ms. The system is shown to be capable of capturing all 94 beam energies delivered by a synchrotron and performing rapid beam range measurements with a mean accuracy of 0.073 +/- 0.030 mm over all energies. The range measurement uncertainty for doses less than 1 cGy was found to be +/- 0.355 mm, indicating high precision for low dose detection. Finally, we demonstrated that using multiple cameras allowed for the precise locations of the delivered beams to be tracked in 3D. We conclude that this detector is capable of real-time and accurate tracking of dynamic spot beam deliveries in 3D. The high-resolution light profiles it generates will be useful for future 3D construction of dose maps.
机译:用于质子束剂量测定法的现有系统受到提供完整,准确,并详细描述体积剂量分布的能力。在这项工作中,我们描述了一种用于质子疗法的便携式,快速和可重复使用的液体闪烁体的三维(3D)光学检测系统的设计和开发。我们的长期目标是在临床上使用该系统进行分立点扫描质子束系统的光束表征,剂量测定和质量保证研究。该系统使用20×20×20cm(3)液体闪烁体积。围绕该体积的三个相互正交的相机捕获响应于质子梁发射的闪烁光子。相机在完全检测体积上表现出0.21mm的平均空间分辨率和11ms的时间分辨率。该系统被证明能够捕获由同步速度传递的所有94个光束能量,并且在所有能量上执行快速光束范围测量,其平均精度为0.073 +/- 0.030mm。发现剂量小于1个CGY的范围测量不确定度为+/- 0.355 mm,表明低剂量检测的高精度。最后,我们证明使用多个相机允许在3D中跟踪递送光束的精确位置。我们得出结论,该探测器能够实时和准确地跟踪3D动态点梁输送。它生成的高分辨率灯谱对剂量图的未来3D构建有用。

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