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Measured and GATE predicted PET-image-based activity range verification for carbon therapy: a phantom study

机译:Measured and GATE predicted PET-image-based activity range verification for carbon therapy: a phantom study

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摘要

In-beam PET is one of the imaging-based methods for monitoring carbon therapy by reconstruction of positron-emitters produced by incident particles. The accurate Monte Carlo simulation is necessary for range verification and therapeutic dose monitoring by means of the in-beam PET. GATE is capable of performing in-beam PET imaging but very few studies assess the accuracy of activity range measured from PET imaging with GATE simulated results. In this work, we present both experimental and GATE simulation studies of in-beam PET imaging of a phantom, which is irradiated by carbon ion beam, for range verification. The experiment data is acquired at Wuwei Heavy Ion Cancer Treatment Center in Gansu, China, with a dual-head plate PET prototype. The PET prototype consists of 2 panels, each arranged in 2 × 2 matrix. Each detector block is composed of 20 × 20 LYSO crystal array coupled with the position-sensitive photomultiplier tube (HAMAMATSU H8500). A homogeneous plastic phantom is irradiated with monoenergetic 131.05MeV and 190.19MeV ~(12)C ion pencil beams. The irradiation and full response of PET prototype are simulated with GATE macros. A novel mathematical model is established, which is capable of calculating and revealing the variation of the positron activity. Our focus is on the reconstructed activity ranges obtained by the experimental measurement and GATE MC prediction combined with the positron activity distribution calculation mathematical model. Results show that the reconstructed activity distribution of experimental data and GATE MC prediction are in good agreement. The measured and simulated 1D activity peak and falling edge positions are within 1.0mm in all cases. The 20%, 50% and 80% PET peak positions predicted by GATE are close to measurements. These results indicated that it is feasible to assess the accuracy of activity range measured from the dual-head plate PET system with the modeled GATE hadron-PET simulation.
机译:梁宠物的成像方法监测碳疗法重建positron-emitters产生的事件粒子。必要的验证和治疗范围剂量监测通过梁的宠物。有能力执行梁PET成像但很少有研究评估活动的准确性测量范围从PET成像与门模拟的结果。实验和模拟研究的门梁PET成像的幻影,这是由碳离子束辐照范围验证。在甘肃武威重离子癌症治疗中心,中国,双头板宠物原型。宠物原型由2板,每一个安排在2×2的矩阵。20×20 LYSO晶体阵列加上位敏光电倍增管(滨松H8500)。辐照和单色的131.05兆电子伏吗190.19兆电子伏~ (12)C离子铅笔梁。辐照和完整响应的宠物原型模拟与门宏。建立数学模型,这是能力的计算,揭示了变化的正电子活动。在重建获得的活动范围实验测量和门MC预测结合正电子活动分布计算的数学模型。结果表明,重建活动分布的实验数据和门MC预测是在良好的协议。和模拟1 d活动高峰和下降沿位置在1.0毫米在所有情况下。50%和80%的宠物峰值位置预测的大门接近测量。表明它是可行的评估活动范围的测量的准确性双头板宠物系统建模hadron-PET模拟。

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