首页> 外文期刊>Journal of the Korean Physical Society >Control of the Low-energy X-rays by Using MCNP5 and Numerical Analysis for a New Concept Intra-oral X-ray Imaging System
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Control of the Low-energy X-rays by Using MCNP5 and Numerical Analysis for a New Concept Intra-oral X-ray Imaging System

机译:使用MCNP5控制低能量X射线,用于新概念内 - 口腔X射线成像系统的新概念的数值分析

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摘要

An X-ray control algorithm to modulate the X-ray intensity distribution over the FOV (field of view) has been developed by using numerical analysis and MCNP5, a particle transport simulation code on the basis of the Monte Carlo method. X-rays, which are widely used in medical diagnostic imaging, should be controlled in order to maximize the performance of the X-ray imaging system. However, transporting X-rays, like a liquid or a gas is conveyed through a physical form such as pipes, is not possible. In the present study, an X-ray control algorithm and technique to uniformize the X-ray intensity projected on the image sensor were developed using a flattening filter and a collimator in order to alleviate the anisotropy of the distribution of X-rays due to intrinsic features of the X-ray generator. The proposed method, which is combined with MCNP5 modeling and numerical analysis, aimed to optimize a flattening filter and a collimator for a uniform distribution of X-rays. Their size and shape were estimated from the method. The simulation and the experimental results both showed that the method yielded an intensity distribution over an X-ray field of 6 x 4 cm(2) at SID (source to image-receptor distance) of 5 cm with a uniformity of more than 90% when the flattening filter and the collimator were mounted on the system. The proposed algorithm and technique are not only confined to flattening filter development but can also be applied for other X-ray related research and development efforts.
机译:通过使用数值分析和MCNP5,通过基于Monte Carlo方法,通过使用数值分析和MCNP5来开发用于调制FOV(视场)上的X射线强度分布的X射线控制算法。应控制广泛用于医疗诊断成像的X射线,以最大化X射线成像系统的性能。然而,不可能通过诸如管道的物理形式输送X射线,如液体或气体。在本研究中,使用扁平化滤光器和准直器开发了X射线控制算法和均匀化突出的X射线强度的技术,以减轻由于内在型引起的X射线分布的各向异性X射线发生器的特点。该方法与MCNP5建模和数值分析相结合,旨在优化扁平化滤波器和准直器,用于均匀分布X射线。从该方法估计它们的尺寸和形状。模拟和实验结果表明,该方法在XI射线场上在3×4cm(2)的X射线场上,SID(源至图像受体距离)为5cm的X射线场,其均匀性大于90%当扁平化过滤器和准直器安装在系统上时。该算法和技术不仅限于扁平化滤波器开发,而且还可以应用于其他X射线相关的研究和开发工作。

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