论文标题

粒子引起的迅速伽马成像的新方法

New approaches to particle induced prompt gamma imaging

论文作者

Nemallapudi, Mythra Varun, Rahman, Atiq Ur, Sihotang, Vanny Marantha, Tran, Thien Cong, Lin, Hsin-Hon, Lin, Chih-Hsun, Chu, Ming-Lee, Chen, Augustine Ei-Fong, Lee, Shih-Chang

论文摘要

质子相互作用在目标材料中引起的迅速伽马排放的分布带有有关质子范围和目标组成的信息。为了图像提示伽马,我们提出了不同的方法。第一种方法是基于与紧凑的PET型检测器一起使用的刀口准准仪,以通过测量依赖Compton分散事件的迅速伽玛的深度分布来验证质子范围。第二种方法旨在通过在患者中引入生物兼容的基准标记,并测量标记物的特征性迅速伽玛,以针对背景材料进行特征性及时伽玛,从而明确地识别了感兴趣区域中质子的存在。第三种方法说明了对位置敏感伽马成像的新型设计,其毫米水平可调节位置分辨率具有高检测效率,这是迈向3D迅速伽马成像的一步,对更好地理解目标组成有用。使用Gate/Geant4 Monte Carlo框架对设计进行了模拟。在Iner和Chang Gung Memorial Hospital的Proton设施进行了有关基金标记的实验测试。使用刀口宠物途径,可以在肿瘤区域附近1厘米以内的1厘米内的偏移和4毫米的范围内实现0.7 mm的验证,以在4 cm窗口内进行换档。对于基准标记方法,我们将984 keV识别为主要的提示伽玛,并表明对于50%的相对PG强度,R80位置落在3 mm厚的48TI标记中。使用位置敏感的伽马成像方法,我们提出了可行的设计,以达到2.6 mm的空间分辨率值,在6.1 MeV时检测效率为5.4E-6,并且在一次运行中最多八个深度位置。讨论了这些方法的相对优势和实施中的挑战。

The distribution of the prompt gamma emissions induced by proton interactions in a target material carries information concerning the proton range and target composition. In order to image prompt gamma we present different approaches. The first approach is based on knife-edge collimator utilized in tandem with a compact PET type detector in order to verify proton range by measuring the depth distribution of prompt gamma relying on Compton scattered events. A second approach aims at unambiguously identifying the presence of protons in a region of interest by introducing a bio-compatible fiducial marker in the patient and measuring the characteristic prompt gamma of the marker against background material. A third approach illustrates a novel design for position sensitive gamma imaging with a millimeter level adjustable position resolution with a high detection efficiency which is a step towards 3D prompt gamma imaging, useful to better understand the target composition. Simulations of the designs were performed using GATE/Geant4 Monte Carlo framework. Experimental tests on fiducial marker were conducted at the proton facilities in INER and Chang Gung Memorial hospital. Using the knife-edge PET approach a range verification of 0.7 mm can be achieved for shifts within 1 cm near the tumor region and up to 4 mm for shifts within a 4 cm window. For the fiducial marker approach we identify 984 keV as the dominant prompt gamma and show that for the 50% relative PG intensity, the R80 position falls within a 3 mm thick 48Ti marker. Using the position sensitive gamma imaging approach we present a feasible design to achieve spatial resolution values of 2.6 mm with a detection efficiency of 5.4E-6 at 6.1 MeV and up to eight depth positions in a single run. The relative advantage of these methods and the challenges in the implementation are discussed.

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