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首页> 外文期刊>Medical Physics >Computed tomography dose measurements with radiochromic films and a flatbed scanner.
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Computed tomography dose measurements with radiochromic films and a flatbed scanner.

机译:使用射线变色胶片和平板扫描仪进行计算机断层摄影剂量测量。

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摘要

Gafchromic XR-QA films were developed for patient dosimetry in diagnostic radiology. A possible application of these films is the measurement of doses in computed tomography. In this study a method to evaluate the CTDI using Gafchromic XR-QA film and a flatbed scanner was developed and tested. Film samples were cut to dimensions of 6 x 170 mm2 in order to have an integration area similar to that of a pencil ionization chamber, with the possibility of changing the integration length. Prior to exposing these films to a computed tomography beam, the angular dependence of the film dose response was investigated by exposing film strips to a static x-ray beam at different angles in the range 0 degrees-180 degrees. A difference of 49% was found between the response with the axis beam parallel to the film surface (90 degrees) and with the axis beam perpendicular (0 degrees and 180 degrees). Integrating over a 360 degrees exposure like the one in computed tomography, a difference of less than 2% was estimated, which is comparable with the measurement error obtainable with XR-QA film. A calibration with a CT beam in the scout mode was performed and film strips were then exposed to single axial scans and to helical scans both in air and in phantoms. Two different types of flatbed scanners were used to read the film samples, a Microtek ScanMaker 9800XL scanner and an Epson Expression 10000 XL scanner, and the accuracy of the results were compared. For beam collimations above 10 mm differences between CTDI measured by film and CTDI measured by ionization chamber below 9% were found for the Epson scanner, with an average estimated error at 1 sigma level of 5%. For the Microtek scanner and for the same film samples, differences below 11% with an average error at 1 sigma level of 8% were founded. The 1 sigma uncertainty of the measured CTDI was provided by the method for each measurement, and it was shown that about the 95% of the differences between the CTDI measurements with radiochromic films and with the ionization chamber were below the estimated 2 sigma uncertainty, for both scanners. After an accurate calibration procedure and the consideration of the uncertainty associated with the measurement, Gafchromic XR-QA films can be used to evaluate the CTDI.
机译:Gafchromic XR-QA胶片用于诊断放射学中的患者剂量测定。这些胶片的可能应用是在计算机断层扫描中测量剂量。在这项研究中,开发并测试了一种使用Gafchromic XR-QA胶片和平板扫描仪评估CTDI的方法。膜样品被切成6 x 170 mm2的尺寸,以便具有与笔式电离室相似的积分面积,并可以改变积分长度。在将这些胶片暴露于计算机断层扫描射线束之前,通过将胶片带暴露于0至180度范围内的不同角度的静态X射线束中,研究胶片剂量响应的角度依赖性。在平行于膜表面的轴光束(90度)和垂直于轴膜光束(0度和180度)的响应之间发现相差49%。像计算机断层扫描一样在360度曝光下进行积分,估计相差不到2%,这与XR-QA胶片可获得的测量误差相当。在侦察模式下用CT光束进行校准,然后将胶条暴露于空气和体模中的单轴向扫描和螺旋扫描。使用两种不同类型的平板扫描仪读取胶片样本,分别是Microtek ScanMaker 9800XL扫描仪和Epson Expression 10000 XL扫描仪,并比较了结果的准确性。对于超过10 mm的光束准直,对于Epson扫描仪,通过薄膜测量的CTDI与通过电离室测量的CTDI之间的差异低于9%,发现1σ级的平均估计误差为5%。对于Microtek扫描仪和相同的胶片样品,发现差异低于11%,平均误差为1 sigma 8%。该方法为每次测量提供了被测CTDI的1 sigma不确定度,结果表明,对于放射性变色膜和电离室,CTDI测量值之间的差异约95%低于估计的2 sigma不确定度。两个扫描仪。经过精确的校准程序并考虑了与测量相关的不确定性,Gafchromic XR-QA膜可用于评估CTDI。

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