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Use of new radiochromic devices for peripheral dose measurement: potential in-vivo dosimetry application

机译:使用新的放射致变色设备进行外周剂量测量:潜在的体内剂量测定法应用

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摘要

The authors have studied the feasibility of using three new high-sensitivity radiochromic devices in measuring the doses to peripheral points outside the primary megavoltage photon beams. The three devices were GAFCHROMIC® EBT film, prototype Low Dose (LD) Film, and prototype LD Card. The authors performed point dosimetry using these three devices in water-equivalent solid phantoms at x = 3,5,8,10, and 15 cm from the edge of 6 MV and 15 MV photon beams of 10x10 cm2, and at depths of 0, 0.5 cm, and depth of maximum dose. A full sheet of EBT film was exposed with 5000 MU. The prototype LD film pieces were 1.5x2 cm2 in size. Some LD films were provided in the form of a card in 1.8x5 cm2 holding an active film in 1.8x2 cm2. These are referred to as “LD dosimeter cards”. The small LD films and cards were exposed with 500 MU. For each scanned film, a 6 mm circular area centered at the measurement point was sampled and the mean pixel value was obtained. The calibration curves were established from the calibration data for each combination of film/cards and densitometer/scanner. The doses at the peripheral points determined from the films were compared with those obtained using ion chamber at respective locations in a water phantom and general agreements were found. It is feasible to accurately measure peripheral doses of megavoltage photon beams using the new high-sensitivity radiochromic devices. This near real-time and inexpensive method can be applied in a clinical setting for dose measurements to critical organs and sensitive patient implant devices.
机译:作者研究了使用三种新的高灵敏度放射致变色设备测量初级兆伏光子束外边缘点剂量的可行性。这三种设备分别是GAFCHROMIC®EBT胶片,低剂量(LD)胶片原型和LD卡原型。作者使用这三种设备在距6x MV和15 MV 10x10 cm2的光子束的边缘x = 3、5、8、10和15 cm,深度为0的水等效固体模型中执行点剂量测定, 0.5厘米,最大剂量的深度。将整片EBT膜用5000 MU曝光。 LD原型胶片的尺寸为1.5x2 cm2。一些以1.8x5 cm2的卡片形式提供的LD胶片,以1.8x2 cm2的面积存放有源膜。这些被称为“ LD剂量计卡”。小型LD胶片和卡片用500 MU曝光。对于每个扫描的胶片,采样以测量点为中心的6 mm圆形区域,并获得平均像素值。根据胶片/卡片和光密度计/扫描仪的每种组合的校准数据建立校准曲线。将由薄膜确定的外围点处的剂量与在水体模中各个位置处使用离子室获得的剂量进行比较,并找到了一般性协议。使用新型高灵敏度放射致变色设备准确测量兆伏光子束的周边剂量是可行的。这种近乎实时且廉价的方法可以在临床环境中用于对关键器官和敏感的患者植入设备进行剂量测量。

著录项

  • 作者

    Chiu-Tsao, S-T; Chan, MF;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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