Université Paris-Saclay, CNRS/IN2P3, IJCLab, F-91405 Orsay, France.
Université de Paris, IJCLab, F-91405 Orsay France.
Phys Med Biol. 2021 May 26;66(11). doi: 10.1088/1361-6560/abf811.
In this work we show the first microdosimetry measurements on a low energy proton beam with therapeutic-equivalent fluence rates by using the second generation of 3D-cylindrical microdetectors. The sensors belong to an improved version of a novel silicon-based 3D-microdetector design with electrodes etched inside silicon, which were manufactured at the National Microelectronics Centre (IMB-CNM, CSIC) in Spain. A new microtechnology has been employed using quasi-toroid electrodes of 25m diameter and a depth of 20m within the silicon bulk, resulting in a well-defined cylindrical radiation sensitive volume. These detectors were tested at the 18 MeV proton beamline of the cyclotron at the National Accelerator Centre (CNA, Spain). They were assembled into an in-house low-noise readout electronics to assess their performance at a therapeutic-equivalent fluence rate. Microdosimetry spectra of lineal energy were recorded at several proton energies starting from 18 MeV by adding 50m thick tungsten foils gradually at the exit-window of the cyclotron external beamline, which corresponds to different depths along the Bragg curve. The experimentalyF¯values in silicon cover from (5.7 ± 0.9) to (8.5 ± 0.4) keV min the entrance to (27.4 ± 2.3) keV min the distal edge. Pulse height energy spectra were crosschecked with Monte Carlo simulations and an excellent agreement was obtained. This work demonstrates the capability of the second generation 3D-microdetectors to assess accurate microdosimetric distributions at fluence rates as high as those used in clinical centers in proton therapy.
在这项工作中,我们使用第二代 3D 圆柱形微探测器展示了首例低能质子束在治疗等效通量率下的微剂量学测量。这些传感器属于一种新型硅基 3D 微探测器设计的改进版本,其电极刻蚀在硅内部,由西班牙国家微电子中心 (IMB-CNM,CSIC) 制造。采用了一种新的微技术,使用直径为 25m 且深度为 20m 的准环形电极,位于硅体内部,形成了一个定义明确的圆柱形辐射敏感体积。这些探测器在西班牙国家加速器中心 (CNA) 的回旋加速器 18 MeV 质子束线上进行了测试。它们被组装成内部低噪声读出电子设备,以评估它们在治疗等效通量率下的性能。通过在回旋加速器外束线出口窗处逐渐添加 50m 厚的钨箔,在几个质子能量下记录了线性能量的微剂量学谱,这些能量从 18 MeV 开始,对应于布拉格曲线沿轴向的不同深度。硅中的实验平均比释动能值在入口处为 (5.7 ± 0.9) keV min,在远侧边缘处为 (27.4 ± 2.3) keV min,范围为 (5.7 ± 0.9) 到 (8.5 ± 0.4) keV min。通过蒙特卡罗模拟对脉冲高度能谱进行了交叉检查,结果吻合得非常好。这项工作证明了第二代 3D 微探测器能够评估在临床质子治疗中心中使用的高通量率下的准确微剂量分布。