首页> 外文期刊>Proceedings of the National Academy of Sciences, India, Section A. Physical Sciences >Evaluation of Crystals' Morphology on Detection Efficiency Using Modern Classification Criterion and Monte Carlo Method in Nuclear Medicine
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Evaluation of Crystals' Morphology on Detection Efficiency Using Modern Classification Criterion and Monte Carlo Method in Nuclear Medicine

机译:评价检测晶体的形态使用现代分类效率标准在核医学和蒙特卡罗方法

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abstract_textpCrystals used in medical imaging systems play a key role in obtaining images for the improvement of diagnoses in medicine. We investigated crystal material characteristics in detection efficiency, and a reliable definition of efficiency proposed for improving spatial resolution. In this study, bismuth germanate (BGO), lutetium oxyortho silicate, gadolinium silicate, and lutetium yttrium oxyortho silicate crystals have been evaluated to compare their special characteristics using Monte Carlo simulation. Additionally, a new criterion is introduced as scattering frequency at which the ratio of the number of Compton interaction to the minimum traversed distance of photons in crystal is suggested. This frequency is based on random numbers, Compton scattering, energy of gamma-ray, geometry and material of crystal. The sensitivity of crystals as a function of crystal width at various incident angles of the photon is investigated. The simulated results have demonstrated that at a distinct width of crystal, the detection efficiency of the BGO crystal was more than that of other crystals in which the amount of scatter and random coincidences decreased. Crystal width at various applications, however, must be optimized with respect to the trade off among the signal-to-noise ratio, spatial and temporal resolutions, efficiency, and the untrue coincidences. Determining crystal width and material may be useful in collimator design to improve spatial resolution and efficiency./p/abstract_text
机译:& abstract_text & p晶体中使用医学成像系统中发挥重要的作用获得图像的改进诊断在医学上。特征检测效率,可靠的效率提出了定义提高空间分辨率。硅酸盐、钆硅酸盐和镥硅酸钇oxyortho晶体评估比较特殊使用蒙特卡罗模拟特性。此外,介绍了作为一个新的标准散射频率的比值康普顿互动的最低数量遍历距离的光子晶体建议。数字、康普顿散射伽马射线的能量,几何和材料的晶体。晶体的晶体宽度的函数不同入射角度的光子调查。表明在不同的晶体宽度,BGO晶体的探测效率超过其他的晶体散射和随机的巧合降低了。然而,必须优化的信噪比之间的权衡,空间和时间分辨率、效率和不真实的巧合。在准直器宽度和材料可能是有用的提高空间分辨率和设计效率。;/ p & / abstract_text

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