人体组织等效材料PMMA的质量和线性衰减系数研究

IF 0.5 Q4 PHYSICS, APPLIED Latvian Journal of Physics and Technical Sciences Pub Date : 2022-04-01 DOI:10.2478/lpts-2022-0012
M. Hamideen, R. Abady, J. Sharaf
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引用次数: 0

摘要

摘要为了研究人体组织临床影像学的改进,组织等效材料是评估辐射剂量对人体组织影响的合理策略之一。因此,考虑质量和线性衰减系数是一种很有前途的方法来预测合适的组织相同材料。在这次检查中,我们利用PMMA材料的元素组成(每个成分的质量部分)的累积估计大量的分析文献。利用XCOM程序计算了不同光子能量(0.015-2.0)MeV下PMMA的质量衰减系数。结果表明,随着光子能量的增大,随着能量的减小,质量和线性衰减系数的估计值较高。将PMMA作为人体组织等效材料的质量和线性衰减系数与肺、脑、肌肉和血液人体组织的质量和线性衰减系数进行合理协调,显示出惊人的匹配。
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Study on Mass and Linear Attenuation Coefficients of PMMA as Human Tissue-Equivalent Material
Abstract To research the improvements of clinical imaging of human tissues, tissue-equivalent materials are one of the reasonable strategies for evaluating the impact of radiation dosages on human tissues. Hence, considering mass and linear attenuation coefficients is a promising method to foresee the appropriate tissue-identical material. In this examination, we utilise the built-up estimations of elemental compositions (mass portion of every component) of PMMA material by numerous analyses in literature. XCOM program was utilised to figure estimations of mass attenuation coefficients of PMMA for various photon energies (0.015–2.0) MeV. The outcomes reveal that the estimations of mass and linear attenuation coefficients are high as the energies begin to decrease and diminish gradually with an expansion in photon energies. Making a sensible coordinating between mass and linear attenuation coefficients of PMMA as human tissue-equivalent material with mass and linear attenuation coefficients of lung, brain, muscle and blood human tissues has demonstrated a phenomenal match.
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来源期刊
CiteScore
1.50
自引率
16.70%
发文量
41
审稿时长
5 weeks
期刊介绍: Latvian Journal of Physics and Technical Sciences (Latvijas Fizikas un Tehnisko Zinātņu Žurnāls) publishes experimental and theoretical papers containing results not published previously and review articles. Its scope includes Energy and Power, Energy Engineering, Energy Policy and Economics, Physical Sciences, Physics and Applied Physics in Engineering, Astronomy and Spectroscopy.
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