Rampado O, Garelli E, Deagostini S, Ropolo R
Struttura Complessa Fisica Sanitaria, Azienda Ospedaliera San Giovanni Battista, Corso Bramante 88, 10126 Torino, Italy.
Phys Med Biol. 2006 Jun 7;51(11):2871-81. doi: 10.1088/0031-9155/51/11/013. Epub 2006 May 24.
There is a growing interest in Gafchromic films for patient dosimetry in radiotherapy and in radiology. A new model (XR-QA) with high sensitivity to low dose was tested in this study. The response of the film to different x-ray beam energies (range 28-145 kVp with various filtrations, dose range 0-100 mGy) and to visible light was investigated, together with the after exposure darkening properties. Exposed films were digitized with a commercially available, optical flatbed scanner. A single functional form for dose versus net pixel value variation has been determined for all the obtained calibration curves, with a unique fit parameter different for each of the used x-ray beams. The film response was dependent on beam energy, with higher colour variations for the beams in the range 80-140 kVp. Different sources of uncertainties in dose measurements, governed by the digitalization process, the film response uniformity and the calibration curve fit procedure, have been considered. The overall one-sigma dose measurement uncertainty depended on the beam energy and decreased with increasing absorbed dose. For doses above 10 mGy and beam energies in the range 80-140 kVp the total uncertainty was less than 5%, whereas for the 28 kVp beam the total uncertainty at 10 mGy was about 10%. The post-exposure colour variation was not negligible in the first 24 h after the exposure, with a consequent increase in the calculated dose of about 10%. Results of the analysis of the sensitivity to visible light indicated that a short exposure of this film to ambient and scanner light during the measurements will not have a significant impact on the radiation dosimetry.
在放射治疗和放射学中,用于患者剂量测定的Gafchromic薄膜越来越受到关注。本研究测试了一种对低剂量具有高灵敏度的新型号(XR-QA)。研究了该薄膜对不同X射线束能量(范围为28 - 145 kVp,具有各种滤过,剂量范围为0 - 100 mGy)和可见光的响应,以及照射后的暗化特性。使用市售的光学平板扫描仪对曝光后的薄膜进行数字化处理。对于所有获得的校准曲线,已确定剂量与净像素值变化的单一函数形式,对于每个使用的X射线束,其拟合参数是唯一不同的。薄膜响应取决于束能量,对于80 - 140 kVp范围内的束,颜色变化更大。考虑了剂量测量中由数字化过程、薄膜响应均匀性和校准曲线拟合程序控制的不同不确定性来源。总体的单标准差剂量测量不确定性取决于束能量,并随着吸收剂量的增加而降低。对于高于10 mGy的剂量和80 - 140 kVp范围内的束能量,总不确定性小于5%,而对于28 kVp的束,在10 mGy时总不确定性约为10%。曝光后的颜色变化在曝光后的前24小时内不可忽略,导致计算剂量增加约10%。对可见光灵敏度的分析结果表明,在测量过程中该薄膜短时间暴露于环境光和扫描仪光下对辐射剂量测定不会有显著影响。