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Clinical studies of optimised single crystal and polycrystalline diamonds for radiotherapy dosimetry

机译:优化的单晶和多晶金刚石放射治疗剂量学的临床研究

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摘要

Natural diamond based ionisation chambers commercialised by PTW are used in several hospitals, and their dosinietric properties have been reported in many papers. Nevertheless their high costs and long delivery times are strong drawbacks. Advancements in the growth of'synthetic diamonds offer new possibilities. This paper presents the closinietric analysis in terms of stability and repeatability of the signal, background signal, detector response dynamics, linearity of the signal with the absorbed dose and dose rate dependence of synthetic optimised polycrystalline and single crystal diamonds. Both were elaborated at the CEA-LIST using the chemical vapour deposition (CVD) growth technique. The first dosirnetric evaluation of single crystal diamond detector, reported here, shows a repeatability better than 0. 1%, a good sensitivity around 70 nC/Gy compared to 3 nC/Gy for optirnised polycrystalline diamond, very fast response with rise time around I s. Moreover, the signal linearity vs absorbed dose and energy dependence are very satisfactory. This preliminary dosimetric study with medical linear accelerators proves that diamond, and more precisely synthetic single crystal diamond, appears as a good alternative to air ionisation chambers forquality bearn control and Could be a good candidate for intensity modulated radiation therapy (IMRT) beams dosimetry.
机译:由PTW商业化的基于天然金刚石的电离室已在多家医院使用,其剂量特性已在许多论文中得到报道。然而,它们的高成本和长交货时间是很大的缺点。人造钻石生长的进步提供了新的可能性。本文介绍了梭菌分析,包括信号的稳定性和可重复性,背景信号,检测器响应动力学,信号线性与吸收剂量的关系以及合成优化多晶和单晶金刚石的剂量率依赖性。两者都在CEA-LIST上使用化学气相沉积(CVD)生长技术进行了详细说明。此处报道的单晶金刚石探测器的第一次剂量学评估显示,重复性优于0. 1%,与优化多晶金刚石的3 nC / Gy相比,灵敏度约为70 nC / Gy,响应速度非常快,上升时间约为1 s。而且,信号线性与吸收剂量和能量依赖性非常令人满意。这项使用医用线性加速器进行的剂量学初步研究证明,金刚石,更准确地说是合成单晶金刚石,似乎可以替代空气电离室,从而实现高质量的信号控制,并且可以成为调强放射治疗(IMRT)光束剂量学的理想选择。

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