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THE APPLICATION OF MONTE CARLO METHOD IN DIAGNOSTIC RADIOLOGY

机译:蒙特卡罗方法在诊断放射学中的应用

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摘要

The main aim of this paper is to evaluate the application of monte carlo method in diagnostic radiology, ionizing radiation has been used in diagnostic radiology more than 100 years. The application of ionising radiation in medicine is a field, which is developing continuously and rapidly. Research in the relatively narrow area of radiation protection in medicine, has enabled technological development, especially in the domains, which specialize in adequacy principles and optimization practices of diagnostic radiology. Alara, (as low as reasonably achievable) principle is used to determine the dosage size. One of the preferred mathematical methods is the monte carlo method and its application in diagnostic radiology. It allows us to calculate the values of physical quantities based on photon's transport simulations. The monte carlo method is a technique in which a large quantity of randomly generated numbers are studied using a probabilistic model to find an approximate solution to a numeric problem that would be difficult to solve by other methods. The monte carlo method is essentially a mathematical model which facilitates the calculation of physical attributes based on the simulation of photon transport. The method provides a realistic simulation of radiation transport, scattering and absorption processes, carried out by ionizing radiation (photons, electrons and neutrons) as it passes through different materials and geometries.
机译:本文的主要目的是评估蒙特卡洛方法在放射诊断学中的应用,电离辐射已经在放射诊断学中应用了100多年。电离辐射在医学中的应用是一个持续快速发展的领域。在医学辐射防护相对狭窄的领域中的研究使技术发展尤其是在诊断放射学的充分性原理和最优化实践领域得以发展。 Alara(尽可能合理地降低)原理用于确定剂量大小。优选的数学方法之一是蒙特卡洛方法及其在放射诊断学中的应用。它使我们能够基于光子的传输模拟来计算物理量的值。蒙特卡洛方法是一种使用概率模型研究大量随机生成数字的技术,以找到难以用其他方法解决的数值问题的近似解。蒙特卡洛方法本质上是一个数学模型,可基于光子传输的模拟来促进物理属性的计算。该方法提供了一个真实的辐射传输,散射和吸收过程的模拟,该过程通过使辐射(光子,电子和中子)穿过不同的材料和几何形状而使其电离来进行。

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