Imaging Research, Sunnybrook Health Sciences Centre, Department of Medical Biophysics, University of Toronto, Toronto M4N 3M5, Canada.
Phys Med Biol. 2013 Mar 7;58(5):1479-93. doi: 10.1088/0031-9155/58/5/1479. Epub 2013 Feb 13.
Scattered x-rays are detrimental to the image quality of x-ray transmission radiography. Anti-scatter grids have been developed for kilovoltage (kV) x-ray imaging but are impractical to use for megavoltage (MV) x-ray imaging in radiation therapy. Our goal is to develop a new approach that uses an inherent anti-scatter detector for scatter reduction in MV x-ray imaging. A Monte Carlo simulation has been conducted to evaluate the response of a recently proposed Čerenkov electronic portal imaging device (CPID) to scattered x-rays. The proposed detector consists of a matrix of optical fibers aligned with the incident x-rays and coupled to an active matrix flat panel imager for image readout. The effects of scatter on the signal and noise of the CPID in comparison with those of conventional electronic portal imaging devices (EPIDs) have been investigated. It has been found that the CPID is ∼50% less sensitive to scattered x-rays than conventional EPIDs at 6 MV. The differential signal to noise ratio is also improved by up to 30% in the CPID. The results of our simulations have demonstrated that the recently proposed CPID system is an inherent anti-scatter detector, the first of this kind, for MV x-ray imaging.
散射 X 射线会降低 X 射线透射成像的图像质量。已经开发出千伏 (kV) X 射线成像的防散射栅格,但在放射治疗的兆伏 (MV) X 射线成像中使用并不实际。我们的目标是开发一种新方法,该方法使用固有防散射探测器来减少 MV X 射线成像中的散射。已经进行了蒙特卡罗模拟,以评估最近提出的切伦科夫电子射野影像装置 (CPID) 对散射 X 射线的响应。所提出的探测器由与入射 X 射线对齐的光纤矩阵组成,并与用于图像读出的有源矩阵平板成像仪耦合。已经研究了与传统电子射野影像设备 (EPIDs) 相比,CPID 中的散射对信号和噪声的影响。已经发现,CPID 在 6 MV 时比传统 EPIDs 对散射 X 射线的灵敏度低约 50%。CPID 中的差分信噪比也提高了 30%。我们的模拟结果表明,最近提出的 CPID 系统是一种固有防散射探测器,是用于 MV X 射线成像的此类探测器中的第一种。