开发和测试生物物体从集成光子发射器吸收能量的模型

T. Sazykina, A. Kryshev
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引用次数: 1

摘要

一种新的分析方法,以前开发的估计吸收分数,扩展到分析估计光子吸收分数在软组织体内的内部均匀分布的伽玛发射器。该方法涉及到将真实生物尺寸转换为结合光子能量和物体尺寸信息的无单位有效尺寸的重新缩放过程。将该方法应用于已发表的软组织球中光子吸收分数的大型数据集。一个新的效果被证明:重新缩放后的数据被统一成一条光滑的“通用曲线”。光子吸收分数的通用曲线被解析地描述为一个单一参数的函数-一个重新标度的有效半径。验证了该方法对非球面凸体(椭球体)的实际适用性。计算了代表性陆生动物内剂量系数的分析估计实例。该方法可用于电子和光子内剂量测定,为计算软组织生物器官和机体的辐射吸收分数提供了有效的分析工具。
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Development and testing a model of energy absorption in biological objects from incorporated photon emitters
A new analytical method, previously developed for estimating beta absorbed fractions, was ex-tended for analytical estimating photon absorbed fractions in soft-tissue bodies from internal uni-formly distributed gamma emitters. The method involves a rescaling procedure with transfor-mation of real biological sizes to unitless effective ones combining information of both photon energy and object’s size. The rescaling was applied to large published datasets of photon ab-sorbed fractions in soft-tissue spheres. A new effect was demonstrated: the rescaled data were united into a single smooth “universal curve” with saturation. The universal curve for photon ab-sorbed fractions was described analytically as a function of a single argument – a rescaled effec-tive radius. Practical applicability of the approach for non-spherical convex bodies (ellipsoids) was demonstrated. Examples of analytical estimating the internal dose coefficients for repre-sentative terrestrial animals were calculated. The new method now available for electron and photon internal dosimetry, provides an effective analytical tool for calculating radiation absorbed fractions in organs and bodies of soft-tissue organisms.
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