Schembri V, Heijmen B J M
Department of Radiation Oncology, Erasmus MC, Rotterdam, The Netherlands.
Med Phys. 2007 Jun;34(6):2113-8. doi: 10.1118/1.2737160.
Conventional x-ray films and radiochromic films have inherent challenges for high precision radiotherapy dosimetry. Here we have investigated basic characteristics of optically stimulated luminescence (OSL) of irradiated films containing carbon-doped aluminum oxide (Al2O3:C) for dosimetry in therapeutic photon and electron beams.
The OSL films consist of a polystyrene sheet, with a top layer of a mixture of single crystals of Al2O3:C, ground into a powder, and a polyester base. The total thickness of the films is 0.3 mm. Measurements have been performed in a water equivalent phantom, using 4, 6, 10, and 18 MV photon beams, and 6-22 MeV electron beams. The studies include assessment of the film response (acquired OSL signal/delivered dose) on delivered dose (linearity), dose rate (1-6 Gy/min), beam quality, field size and depth (6 MV, ranges 4 x 4-30 x 30 cm2, dmax-35 cm). Doses have been derived from ionization chamber measurements. OSL films have also been compared with conventional x-ray and GafChromic films for dosimetry outside the high dose area, with a high proportion of low dose scattered photons. In total, 787 OSL films have been irradiated.
Overall, the OSL response for electron beams was 3.6% lower than for photon beams. Differences between the various electron beam energies were not significant. The 6 and 18 MV photon beams differed in response by 4%. No response dependencies on dose rate were observed. For the 6 MV beam, the field size and depth dependencies of the OSL response were within +/-2.5%. The observed inter-film response variation for films irradiated with the same dose varied from 1% to 3.2% (1 SD), depending on the measurement day. At a depth of 20 cm, 5 cm outside the 20 x 20 cm2 6 and 18 MV beams, an over response of 17% was observed. In contrast to GafChromic and conventional x-ray films, the response of the Al2O3:C films is linear in the clinically relevant dose range 0-200 cGy.
Measurement of the OSL signal of irradiated films containing Al2O3:C is a promising technique for film dosimetry in radiotherapy with no or small response variations with dose rate, beam quality, field size and depth, and a linear response from 0 to 200 cGy.
传统的X线胶片和放射变色胶片在高精度放射治疗剂量测定方面存在固有挑战。在此,我们研究了含碳掺杂氧化铝(Al2O3:C)的辐照胶片的光激发发光(OSL)的基本特性,用于治疗性光子束和电子束的剂量测定。
OSL胶片由聚苯乙烯片组成,顶层是Al2O3:C单晶的混合物磨成的粉末,以及聚酯基底。胶片的总厚度为0.3毫米。在水等效体模中进行了测量,使用4、6、10和18兆伏光子束,以及6 - 22兆电子伏电子束。研究包括评估胶片响应(获取的OSL信号/给予的剂量)对给予剂量(线性)、剂量率(1 - 6戈瑞/分钟)、射束质量、射野大小和深度(6兆伏,范围4×4 - 30×30平方厘米,最大剂量深度 - 35厘米)的情况。剂量由电离室测量得出。OSL胶片还与传统X线胶片和GafChromic胶片在高剂量区域外进行了比较,该区域存在高比例的低剂量散射光子。总共辐照了787张OSL胶片。
总体而言,电子束的OSL响应比光子束低3.6%。不同电子束能量之间的差异不显著。6兆伏和18兆伏光子束的响应相差4%。未观察到对剂量率的响应依赖性。对于6兆伏射束,OSL响应的射野大小和深度依赖性在±2.5%以内。根据测量日期,相同剂量辐照的胶片间观察到的响应变化在1%至3.2%(1标准差)之间。在20×20平方厘米的6兆伏和18兆伏射束外20厘米深度处、5厘米位置,观察到17%的过度响应。与GafChromic胶片和传统X线胶片不同,Al2O3:C胶片在临床相关剂量范围0 - 200厘戈瑞内的响应是线性的。
测量含Al2O3:C的辐照胶片的OSL信号是放射治疗中胶片剂量测定的一种有前景的技术,对剂量率、射束质量、射野大小和深度的响应变化无或很小,且在0至200厘戈瑞范围内响应呈线性。