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用于计算机断层扫描中辐射剂量测量的实验性自显影Gafchromic HXR胶片的校准。

The calibration of experimental self-developing Gafchromic HXR film for the measurement of radiation dose in computed tomography.

作者信息

Gorny K R, Leitzen S L, Bruesewitz M R, Kofler J M, Hangiandreou N J, McCollough C H

机构信息

Department of Radiology, Mayo Clinic College of Medicine, Rochester Minnesota 55905, USA.

出版信息

Med Phys. 2005 Apr;32(4):1010-6. doi: 10.1118/1.1862802.

Abstract

A prototype, self-developing Gafchromic HXR film has sensitivity an order of magnitude larger than that of the commercially available Gafchromic XR film used in interventional radiological applications. The higher sensitivity of the HXR film allows the possibility of acquisition of high-resolution calibrated dose profiles within the diagnostic range of exposure levels, below 10 R (87.7 mGy). We employed a commercially available, optical flatbed scanner for digitization of the film and image analysis software to determine the response of the HXR films to ionizing radiation. Spatial uniformity and temporal repeatability of the flatbed scanner were determined and used in optimization of the digitization protocol. The HXR film postexposure density growth and sensitivity to ambient light were determined using multiple scans of two simultaneously exposed sheets, one stored in light-tight conditions and the other continuously illuminated with white light. A calibrated step wedge of the HXR film was obtained by simultaneous irradiation of a portion of a film strip and a calibrated ionization chamber using a radiographic x-ray tube with beam characteristics matched to a typical CT scanner (8 mm Al HVL, 120 kVp). Repeated digitization of the calibration film was used to determine the precision of the film response measurements. The precision, as measured by the standard deviation of multiple measurements, was better than 1% over the full dynamic range of film response. This precision was measured using exposures ranging from 0.5 to 12 R (4.4 to 105.3 mGy). This exposure range is highly relevant to x-ray computed tomography. Preliminary radiation dose profiles demonstrate the utility of this technique.

摘要

一种自行研制的Gafchromic HXR胶片原型,其灵敏度比介入放射学应用中使用的市售Gafchromic XR胶片高一个数量级。HXR胶片更高的灵敏度使得在低于10 R(87.7 mGy)的诊断照射水平范围内获取高分辨率校准剂量分布成为可能。我们使用市售的光学平板扫描仪对胶片进行数字化处理,并使用图像分析软件来确定HXR胶片对电离辐射的响应。确定了平板扫描仪的空间均匀性和时间重复性,并将其用于优化数字化协议。通过对两张同时曝光的胶片进行多次扫描来确定HXR胶片曝光后的密度增长和对环境光的敏感度,其中一张保存在不透光的条件下,另一张持续用白光照射。使用具有与典型CT扫描仪相匹配的束流特性(8 mm铝半值层,120 kVp)的射线照相X射线管,同时照射胶片条的一部分和校准电离室,从而获得HXR胶片的校准阶梯楔形片。对校准胶片进行重复数字化处理,以确定胶片响应测量的精度。在胶片响应的整个动态范围内,多次测量的标准偏差所测得的精度优于1%。该精度是在0.5至12 R(4.4至105.3 mGy)的曝光范围内测得的。这个曝光范围与X射线计算机断层扫描高度相关。初步的辐射剂量分布证明了该技术的实用性。

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