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Dosimetric characterization of GafChromic EBT film and its implication on film dosimetry quality assurance

机译:GafChromic EBT膜的剂量学表征及其对膜剂量学质量保证的意义

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The suitability of radiochromic EBT filmwas studied for high-precision clinical quality assurance (QA) by identifying the dose response for a wide range of irradiation parameters typically modified in highly-conformal treatment techniques. In addition, uncertainties associated with varying irradiation conditions were determined. EBT can be used for dose assessment of absorbed dose levels as well as relative dosimetry when compared to absolute absorbed dose calibrated using ionization chamber results. For comparison, a silver halide film (Kodak EDR- 2) representing the current standard in film dosimetry was included. As an initial step a measurement protocol yielding accurate and precise results was established for a flatbed transparency scanner (Epson Expression 1680 Pro) that was utilized as a film reading instrument. The light transmission measured by the scanner was found to depend on the position of the film on the scanner plate. For three film pieces irradiated with doses of 0 Gy, similar to 1 Gy and similar to 7 Gy, the pixel values measured in portrait or landscape mode differed by 4.7%, 6.2% and 10.0%, respectively. A study of 200 film pieces revealed an excellent sheet-to-sheet uniformity. On a long time scale, the optical development of irradiated EBT film consisted of a slow but steady increase of absorbance which was not observed to cease during 4 months. Sensitometric curves of EBT films obtained under reference conditions (SSD = 95 cm, FS = 5 x 5 cm(2), d = 5 cm) for 6, 10 and 25 MV photon beams did not show any energy dependence. The average separation between all curves was only 0.7%. The variation of the depth d (range 2 - 25 cm) in the phantom did not affect the dose response of EBT film. Also the influence of the radiation field size (range 3 x 3 - 40 x 40 cm(2)) on the sensitometric curve was not significant. For EDR-2 films maximum differences between the calibration curves reached 7 - 8% for X6MV and X25MV. Radiochromic EBT film, in combination with a flatbed scanner, presents a versatile system for high-precision dosimetry in two dimensions, provided that the intrinsic behaviour of the film reading device is taken into account. EBT film itself presents substantial improvements on formerly available models of radiographic and a radiochromic film and its dosimetric characteristics allow us to measure absorbed dose levels in a large variety of situations with a single calibration curve.
机译:通过确定通常在高保形治疗技术中修改的各种辐照参数的剂量响应,研究了放射致变色EBT膜对高精度临床质量保证(QA)的适用性。另外,确定了与变化的照射条件相关的不确定性。与使用电离室结果校准的绝对吸收剂量相比,EBT可用于吸收剂量水平的剂量评估以及相对剂量测定。为了进行比较,包括代表膜剂量测定中当前标准的卤化银膜(Kodak EDR-2)。作为第一步,建立了用作平板阅读仪的平板式透明扫描仪(Epson Expression 1680 Pro)的测量协议,可以产生准确而精确的结果。发现由扫描仪测量的光透射率取决于胶片在扫描板上的位置。对于以0 Gy,类似于1 Gy和类似于7 Gy的剂量照射的三片胶片,在纵向或横向模式下测量的像素值分别相差4.7%,6.2%和10.0%。对200个胶片的研究显示出极好的片对片均匀性。从长远来看,被辐照的EBT膜的光学显影包括缓慢但稳定的吸光度增加,这在4个月内没有停止。在6、10和25 MV光子束的参考条件下(SSD = 95 cm,FS = 5 x 5 cm(2),d = 5 cm)获得的EBT膜的感光度曲线没有显示任何能量依赖性。所有曲线之间的平均间隔仅为0.7%。体模中的深度d的变化(范围2-25 cm)不影响EBT膜的剂量响应。同样,辐射场大小(3 x 3-40 x 40 cm(2)的范围)对灵敏度曲线的影响也不显着。对于EDR-2胶片,X6MV和X25MV的校准曲线之间的最大差异达到7-8%。放射致变色EBT胶片与平板扫描仪相结合,提供了一种用于二维高精度剂量测定的多功能系统,前提是要考虑到胶片读取设备的固有性能。 EBT胶片本身在射线照相胶片和放射致变色胶片的先前可用模型上提出了实质性的改进,其剂量学特性使我们能够通过一条校准曲线在多种情况下测量吸收剂量水平。

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