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首页> 外文期刊>Advances in Radiation Oncology >Multiple energy extraction reduces beam delivery time for a synchrotron-based proton spot-scanning system
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Multiple energy extraction reduces beam delivery time for a synchrotron-based proton spot-scanning system

机译:多种能量提取减少了基于同步加速器的质子点扫描系统的束流传输时间

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PurposeMultiple energy extraction (MEE) is a technology that was recently introduced by Hitachi for its spot-scanning proton treatment system, which allows multiple energies to be delivered in a single synchrotron spill. The purpose of this paper is to investigate how much beam delivery time (BDT) can be reduced with MEE compared with single energy extraction (SEE), in which one energy is delivered per spill.Methods and MaterialsA recently developed model based on BDT measurements of our synchrotron's delivery performance was used to compute BDT. The total BDT for 2694 beam deliveries in a cohort of 79 patients treated at our institution was computed in both SEE and 9 MEE configurations to determine BDT reduction. The cohort BDT reduction was also calculated for hypothetical accelerators with increased deliverable charge and compared with the results of our current delivery system.ResultsA vendor-provided MEE configuration with 4 energy layers per spill reduced the total BDT on average by 35% (41 seconds) compared with SEE, with up to 65% BDT reduction for individual fields. Adding an MEE layer reduced the total BDT by <1% of SEE BDT. However, improving charge recapture efficiency increased BDT savings by up to 42% of SEE BDT.ConclusionsThe MEE delivery technique reduced the total BDT by 35%. Increasing the charge per spill and charge recapture efficiency is necessary to further reduce BDT and thereby take full advantage of our MEE system's potential to improve treatment delivery efficiency and operational throughput.
机译:目的多能量提取(MEE)是日立公司最近为其点扫描质子处理系统引入的一项技术,该技术可在一次同步加速器泄漏中传递多种能量。本文的目的是研究与单能量提取(SEE)相比,使用MEE可以减少多少光束传输时间(BDT),后者每次泄漏可以释放一种能量。方法和材料一种基于BDT测量的最近开发的模型我们的同步加速器的传送性能用于计算BDT。在SEE和9种MEE配置下,计算了在我们机构治疗的79名患者中2694束光束的总BDT,以确定BDT的降低。还计算了假设的加速器的可交付使用的电荷增加的队列BDT减少量,并将其与我们当前的交付系统的结果进行比较。结果供应商提供的MEE配置(每个溢流具有4个能量层)平均使总BDT减少了35%(41秒)与SEE相比,单个字段的BDT降低了65%。添加MEE层可使总的BDT降低不到SEE BDT的1%。但是,提高电荷捕获效率可将BDT节省量提高到SEE BDT的42%。结论MEE传输技术使总BDT减少了35%。要进一步降低BDT,从而充分利用我们的MEE系统的潜力,以提高每次治疗的排放量和电荷重新捕获的效率,可以提高处理的交付效率和操作产量。

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