Okunade Akintunde A
Department of Physics, Obafemi Awolowo University 220005, ILE-IFE Osun State, Nigeria.
J Med Phys. 2007 Jul;32(3):124-32. doi: 10.4103/0971-6203.35725.
The mass attenuation and energy-absorption coefficients (radiation interaction data), which are widely used in the shielding and dosimetry of X-rays used for medical diagnostic and orthovoltage therapeutic procedures, are strongly dependent on the energy of photons, elements and percentage by weight of elements in body tissues and substitutes. Significant disparities exist in the values of percentage by weight of elements reported in literature for body tissues and substitutes for individuals of different ages, genders and states of health. Often, interested parties are in need of these radiation interaction data for body tissues or substitutes with percentage by weight of elements and intermediate energies that are not tabulated in literature. To provide for the use of more precise values of these radiation interaction data, parameters and computer programs, MUA_T and MUEN_T are presented for the computation of mass attenuation and energy-absorption coefficients for body tissues and substitutes of arbitrary percentage-by-weight elemental composition and photon energy ranging between 1 keV (or k-edge) and 400 keV. Results are presented, which show that the values of mass attenuation and energy-absorption coefficients obtained from computer programs are in good agreement with those reported in literature.
质量衰减系数和能量吸收系数(辐射相互作用数据)在用于医学诊断和深部X线治疗程序的X射线屏蔽和剂量测定中广泛应用,它们强烈依赖于光子能量、元素以及人体组织和替代物中元素的重量百分比。文献报道的不同年龄、性别和健康状况个体的人体组织和替代物中元素的重量百分比数值存在显著差异。通常,相关方需要这些针对人体组织或替代物的辐射相互作用数据,其元素重量百分比和中间能量在文献中未制成表格。为了提供这些辐射相互作用数据、参数和计算机程序的更精确值,提出了MUA_T和MUEN_T,用于计算任意元素组成重量百分比和1 keV(或K边)至400 keV光子能量范围内的人体组织和替代物的质量衰减系数和能量吸收系数。给出的结果表明,从计算机程序获得的质量衰减系数和能量吸收系数值与文献报道的值高度一致。