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首页> 外文期刊>Medical Physics >Characterization of a fiber-optic-coupled radioluminescent detector for application in the mammography energy range.
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Characterization of a fiber-optic-coupled radioluminescent detector for application in the mammography energy range.

机译:应用于乳腺X射线摄影能量范围的光纤耦合辐射探测器的表征。

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Fiber-optic-coupled radioluminescent (FOC) dosimeters are members of a new family of dosimeters that are finding increased clinical applications. This study provides the first characterization of a Cu doped quartz FOC dosimeter at diagnostic energies, specifically across the range of x-ray energies and intensities used in mammographies. We characterize the calibration factors, linearity, angular dependence, and reproducibility of the FOC dosimeters. The sensitive element of each dosimeter was coupled to a photon counting photomultiplier module via 1 m long optical fibers. A computer controlled interface permitted real-time monitoring of the dosimeter output and rapid data acquisition. The axial-angular responses for all dosimeter models show nearly uniform response without any marked decrease in sensitivity. However, the normal-to-axial angular response showed a marked decrease in sensitivity of about 0 degrees C and 180 degrees C. In most clinical applications, appropriate dosimeter positioning can minimize the contributions of the varying normal-to-axial response. The FOC dosimeters having the greatest sensitive length provided the greatest sensitivity, with greatest to lowest sensitivity observed for 4.0, 1.9, 1.6, and 1.1 mm length sensitive elements. The average sensitivity of the dosimeters varies linearly with sensitive volume (R2=95%) and as a function of tube potential and target/filter combinations, generally exhibiting an increased sensitivity for higher energies. The dosimeter sensitivity as a function of tube potential had an average increase of 4.72 +/- 2.04% for dosimeter models and three target-filter combinations tested (Mo/Mo, Mo/Rh, and Rh/Rh) over a range of 25-31 kVp. All dosimeter models exhibited a linear response (R2 > or = 0.997) to exposure for all target-filter combinations, tube potentials, and tube current-time product stations evaluated and demonstrated reproducibility within 2%. All of the dosimeters examined in this study provided a response adequate for the accurate measurement of doses in clinical mammography applications.
机译:光纤耦合放射性发光(FOC)剂量计是新的剂量计系列的成员,这些新的剂量计发现了越来越多的临床应用。这项研究提供了在诊断能量下,特别是在X射线能量和乳腺摄影所用强度范围内的掺杂Cu的石英FOC剂量计的首次表征。我们表征了FOC剂量计的校准因子,线性,角度依赖性和可重复性。每个剂量计的敏感元件通过1 m长的光纤耦合到光子计数光电倍增器模块。计算机控制的界面允许实时监控剂量计的输出并快速采集数据。所有剂量计模型的轴角响应都显示出几乎均匀的响应,而灵敏度没有明显下降。但是,法线-轴向角响应显示出灵敏度显着下降,大约为0摄氏度和180摄氏度。在大多数临床应用中,适当的剂量计定位可以使法线-轴向响应变化的影响最小化。具有最大敏感长度的FOC剂量计提供了最大的灵敏度,对于4.0、1.9、1.6和1.1 mm长度的敏感元件,观测到的灵敏度从最大到最低。剂量计的平均灵敏度随灵敏体积(R2 = 95%)线性变化,并随电子管电势和靶标/滤光片组合的变化而变化,通常对更高能量显示出更高的灵敏度。剂量计灵敏度与管电势的函数关系在剂量计模型和测试的三种目标过滤器组合(Mo / Mo,Mo / Rh和Rh / Rh)的25-70%范围内平均增加了4.72 +/- 2.04%。 31 kVp。所有剂量计模型对所有目标过滤器组合,电子管电势和电子管电流-时间乘积站的暴露均显示出对暴露的线性响应(R2>或= 0.997),并证明可重复性在2%以内。在这项研究中检查的所有剂量计都提供了足以在临床乳房X线照相术应用中准确测量剂量的响应。

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