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首页> 外文期刊>Medical Physics >Photon beam dosimetry in the superficial buildup region using radiochromic EBT film stack.
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Photon beam dosimetry in the superficial buildup region using radiochromic EBT film stack.

机译:使用放射性变色EBT膜堆在浅层堆积区域进行光子束剂量测定。

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摘要

It has been a challenge to perform accurate 2D or 3D dosimetry in the surface region with steep dose gradient for megavoltage photon beams. We developed a dosimetry method in the superficial buildup region for the 6 and 15 MV photon beams using a radiochromic EBT film stack. Eight radiochromic EBT film strips (3 x 20 x 0.024 cm3) stacked together formed a 3D dosimeter. The film stack was positioned above a polystyrene phantom and surrounded by Solid Water slabs (0.2 cm) with the top film layer at 100 cm SSD. A 10 x 10 cm2 open field was used to irradiate the film stack with 1000 MU. All films were scanned using Epson 4870 flatbed scanner with transmission mode, 48 bit color, and 150 dpi (0.017 cm pixel resolution). The pixel values were converted to doses using an established calibration curve. This method allowed dose measurement for depths from 0.012 to 0.18 cm with fine spatial resolution (0.017 cm horizontally and 0.024 cm vertically). For each energy modality, we obtained both the central axis percent depth doses and the beam profiles along the central line covering the primary field and peripheral region at each depth. The primary field doses varied steeply with depth, while those in the peripheral region were weakly dependent on depth. For the 6 MV and 15 MV photon beams, (1) the central axis percent depth doses in the eight film layers ranged from 22% to 66% and from 15% to 44%, respectively; (2) the extrapolated percent depth doses at d = 0 were 15% and 14%, respectively. Agreement with the previously reported central axis percent depth doses in this region using parallel plate thin window ion chamber and ultrathin TLD was observed. The percent depth doses and beam profiles data can be incorporated in the treatment planning system for more accurate assessment of the doses to skin and shallow tumors to accomplish more accurate calculation results in the clinical usage.
机译:在兆伏光子束的陡峭剂量梯度下,在表面区域执行精确的2D或3D剂量测定一直是一个挑战。我们使用放射致变色EBT薄膜叠层在6和15 MV光子束的浅层聚集区域开发了一种剂量测定方法。八个堆叠在一起的放射致变色EBT薄膜条(3 x 20 x 0.024 cm3)形成3D剂量计。将薄膜叠层放置在聚苯乙烯体模上方,并用固体水平板(0.2厘米)围绕,其顶部薄膜层位于100厘米固态硬盘上。用10×10cm 2的空旷场以1000MU照射膜叠。使用具有透射模式,48位色和150 dpi(0.017厘米像素分辨率)的Epson 4870平板扫描仪扫描所有胶片。使用建立的校准曲线将像素值转换为剂量。该方法允许以0.012至0.18 cm的深度进行剂量测量,并具有良好的空间分辨率(水平0.017 cm,垂直0.024 cm)。对于每种能量模态,我们都获得了中心轴百分比深度剂量和沿中心线的光束轮廓,该中心线覆盖了每个深度处的主场和外围区域。初级场剂量随深度而急剧变化,而外围区域的剂量对深度的依赖性很小。对于6 MV和15 MV光子束,(1)八个薄膜层的中心轴深度剂量百分比分别为22%至66%和15%至44%; (2)在d = 0时外推的深度剂量百分比分别为15%和14%。使用平行板薄窗离子室和超薄TLD,观察到与该区域先前报道的中心轴深度剂量百分比一致。可以将深度剂量百分比和射束轮廓数据合并到治疗计划系统中,以便更准确地评估皮肤和浅层肿瘤的剂量,从而在临床使用中实现更准确的计算结果。

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