Lansley S P, Betzel G T, Metcalfe P, Reinisch L, Meyer J
Department of Physics and Astronomy, University of Canterbury, Christchurch, New Zealand.
Australas Phys Eng Sci Med. 2010 Dec;33(4):301-6. doi: 10.1007/s13246-010-0040-6. Epub 2010 Nov 16.
Diamond detectors are particularly well suited for dosimetry applications in radiotherapy for reasons including near-tissue equivalence and high-spatial resolution resulting from small sensitive volumes. However, these detectors have not become commonplace due to high cost and poor availability arising from the need for high-quality diamond. We have fabricated relatively cheap detectors from commercially-available synthetic diamond fabricated using chemical vapour deposition. Here, we present a comparison of one of these detectors with the only commercially-available diamond-based detector (which uses a natural diamond crystal). Parameters such as the energy dependence and linearity of charge with dose were investigated at orthovoltage energies (50-250 kV), and dose-rate dependence of charge at linear accelerator energy (6 MV). The energy dependence of a synthetic diamond detector was similar to that of the natural diamond detector, albeit with slightly less variation across the energy range. Both detectors displayed a linear response with dose (at 100 kV) over the limited dose range used. The sensitivity of the synthetic diamond detector was 302 nC/Gy, compared to 294 nC/Gy measured for the natural diamond detector; however, this was obtained with a bias of 246.50 V compared to a bias of 61.75 V used for the natural diamond detector. The natural diamond detector exhibited a greater dependency on dose-rate than the synthetic diamond detector. Overall, the synthetic diamond detector performed well in comparison to the natural diamond detector.
由于包括接近组织等效性以及小灵敏体积带来的高空间分辨率等原因,金刚石探测器特别适用于放射治疗中的剂量测定应用。然而,由于高质量金刚石需求导致的高成本和低可得性,这些探测器尚未普及。我们使用化学气相沉积法制备的市售合成金刚石制造了相对便宜的探测器。在此,我们将其中一种探测器与唯一市售的基于金刚石的探测器(使用天然金刚石晶体)进行比较。在正交电压能量(50 - 250 kV)下研究了诸如能量依赖性和电荷与剂量的线性关系等参数,以及在直线加速器能量(6 MV)下电荷的剂量率依赖性。合成金刚石探测器的能量依赖性与天然金刚石探测器相似,尽管在整个能量范围内变化略小。在使用的有限剂量范围内,两种探测器在剂量(100 kV 时)方面均表现出线性响应。合成金刚石探测器的灵敏度为 302 nC/Gy,相比之下,天然金刚石探测器测量值为 294 nC/Gy;然而,合成金刚石探测器的偏置电压为 246.50 V,而天然金刚石探测器使用的偏置电压为 61.75 V。天然金刚石探测器比合成金刚石探测器对剂量率的依赖性更强。总体而言,与天然金刚石探测器相比,合成金刚石探测器表现良好。