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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Optimization of the collimator mask for the rotational modulation collimator-based gamma-ray/neutron dual-particle imager
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Optimization of the collimator mask for the rotational modulation collimator-based gamma-ray/neutron dual-particle imager

机译:基于旋转调制准直伽马射线/中子双粒子成像器的准直器掩模的优化

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摘要

The purpose of this study is to optimize the collimator mask design for the rotational modulation collimator (RMC) imaging system. First, we optimized the slat and slit width of the collimator mask which affects the number of particles entering the detector and, thus, alters the morphology of modulation patterns. However, the conventional collimator mask design with bilateral symmetry posed an inherent ambiguity issue in the estimation of the source location in the reconstructed image. Therefore, we propose a new asymmetric collimator mask design which can solve the ambiguity problem for the development of the dual-particle imaging system. Modulation patterns for various types of asymmetric mask designs were calculated with Monte Carlo simulations, and modulation and transmission efficiencies were compared with ones for the conventional RMC mask design to evaluate the nominal performance of the new mask designs. The proposed asymmetric collimator mask removed the ambiguous artifact from the reconstructed image without compromising transmission and modulation efficiencies. In addition, one can even expect to achieve better spatial resolution in the reconstructed image with the proposed new asymmetric mask design, as compared with the asymmetric mask design suggested from the previous study.
机译:本研究的目的是优化用于旋转调制准直器(RMC)成像系统的准直器掩模设计。首先,我们优化了准直器掩模的板条和狭缝宽度,这影响进入检测器的粒子的数量,从而改变调制模式的形态。然而,具有双边对称的传统准直器掩模设计在重建图像中估计源位置的估计中构成了固有的歧义问题。因此,我们提出了一种新的非对称准直掩模设计,其可以解决双粒子成像系统的开发的模糊问题。用蒙特卡罗模拟计算各种类型的不对称掩模设计的调制模式,并将调制和传输效率与传统RMC掩模设计的调制和传输效率进行比较,以评估新掩模设计的标称性能。所提出的不对称准直器掩模从重建图像中移除了模糊的伪像而不损害传输和调制效率。此外,与前一项研究中建议的非对称掩模设计相比,甚至可以期望在重建图像中实现更好的空间分辨率。

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