Nichiporov D, Coutinho L, Klyachko A V
Phys Med Biol. 2016 Apr 21;61(8):2972-90. doi: 10.1088/0031-9155/61/8/2972. Epub 2016 Mar 18.
Accurate, high-spatial resolution dosimetry in proton therapy is a time consuming task, and may be challenging in the case of small fields, due to the lack of adequate instrumentation. The purpose of this work is to develop a novel dose imaging detector with high spatial resolution and tissue equivalent response to dose in the Bragg peak, suitable for beam commissioning and quality assurance measurements. A scintillation gas electron multiplier (GEM) detector based on a double GEM amplification structure with optical readout was filled with a He/CF4 gas mixture and evaluated in pristine and modulated proton beams of several penetration ranges. The detector's performance was characterized in terms of linearity in dose rate, spatial resolution, short- and long-term stability and tissue-equivalence of response at different energies. Depth-dose profiles measured with the GEM detector in the 115-205 MeV energy range were compared with the profiles measured under similar conditions using the PinPoint 3D small-volume ion chamber. The GEM detector filled with a He-based mixture has a nearly tissue equivalent response in the proton beam and may become an attractive and efficient tool for high-resolution 2D and 3D dose imaging in proton dosimetry, and especially in small-field applications.
在质子治疗中,精确的高空间分辨率剂量测定是一项耗时的任务,并且在小射野情况下,由于缺乏足够的仪器设备,可能具有挑战性。本研究的目的是开发一种新型剂量成像探测器,该探测器具有高空间分辨率以及在布拉格峰处对剂量的组织等效响应,适用于射束调试和质量保证测量。一种基于双GEM放大结构并采用光学读出的闪烁气体电子倍增器(GEM)探测器,填充了He/CF4气体混合物,并在几种穿透范围的原始和调制质子束中进行了评估。该探测器的性能通过剂量率线性、空间分辨率、短期和长期稳定性以及不同能量下响应的组织等效性来表征。将在115 - 205 MeV能量范围内用GEM探测器测量的深度剂量分布与在类似条件下使用PinPoint 3D小体积电离室测量的分布进行了比较。填充基于He的混合物的GEM探测器在质子束中具有近乎组织等效的响应,并且可能成为质子剂量测定中高分辨率二维和三维剂量成像的一种有吸引力且高效的工具,特别是在小射野应用中。