Spang F Jiménez, Rosenberg I, Hedin E, Royle G
Department of Medical Physics and Bioengineering, University College London, Gower Street, London WC1E 6BT, UK.
Phys Med Biol. 2015 Jun 7;60(11):4383-98. doi: 10.1088/0031-9155/60/11/4383. Epub 2015 May 18.
In this work the dosimetric performance of CMOS active pixel sensors for the measurement of small photon beams is presented. The detector used consisted of an array of 520 × 520 pixels on a 25 µm pitch. Dosimetric parameters measured with this sensor were compared with data collected with an ionization chamber, a film detector and GEANT4 Monte Carlo simulations. The sensor performance for beam profiles measurements was evaluated for field sizes of 0.5 × 0.5 cm(2). The high spatial resolution achieved with this sensor allowed the accurate measurement of profiles, beam penumbrae and field size under lateral electronic disequilibrium. Field size and penumbrae agreed within 5.4% and 2.2% respectively with film measurements. Agreements with ionization chambers better than 1.0% were obtained when measuring tissue-phantom ratios. Output factor measurements were in good agreement with ionization chamber and Monte Carlo simulation. The data obtained from this imaging sensor can be easily analyzed to extract dosimetric information. The results presented in this work are promising for the development and implementation of CMOS active pixel sensors for dosimetry applications.
在这项工作中,展示了用于测量小光子束的CMOS有源像素传感器的剂量学性能。所使用的探测器由间距为25 µm的520×520像素阵列组成。将该传感器测量的剂量学参数与用电离室、薄膜探测器收集的数据以及GEANT4蒙特卡罗模拟结果进行了比较。针对0.5×0.5 cm²的射野尺寸评估了该传感器在射野轮廓测量方面的性能。该传感器实现的高空间分辨率使得能够在横向电子不平衡情况下准确测量轮廓、射野半值层和射野尺寸。射野尺寸和半值层与薄膜测量结果的一致性分别在5.4%和2.2%以内。在测量组织体模比时,与电离室的一致性优于1.0%。输出因子测量结果与电离室和蒙特卡罗模拟结果吻合良好。从该成像传感器获得的数据能够轻松进行分析以提取剂量学信息。这项工作所呈现的结果对于用于剂量学应用的CMOS有源像素传感器的开发和应用而言很有前景。