Williamson J F, Nath R
Department of Radiation Oncology, University of Arizona Health Science Center, Tucson 85724.
Med Phys. 1991 May-Jun;18(3):439-48. doi: 10.1118/1.596691.
Historically the strength of sealed brachytherapy sources has been described by many physical quantities, including true activity, apparent activity, and equivalent mass of radium. Recently, the AAPM Task Group 32 recommended that these quantities be replaced by a single quantity, air-kerma strength, with units of muGy m2h-1. A set of equations has been developed for unambiguously converting source strength estimates and renormalizing published dose-rate tables, which assume traditional quantities and units, into forms consistent with air-kerma strength. For commonly used brachytherapy sources, multiplicative conversion factors for each source-strength formalism and set of units are given. To convert equivalent mass of radium to air-kerma strength requires a single multiplicative factor, 7.23 muGy m2h-1/mgRaEq, applicable to all sources. Based upon a review of vendor source specification practices, the factors for converting source strength of 198Au, 103Pd, and 125I seeds from apparent mCi to air-kerma strength are 2.06, 1.29, and 1.27 muGy m2h-1/mCi(apparent), respectively. These factors are independent of source geometry but depend on the nominal exposure rate constant value selected by the vendor. Conversion factors applicable to mass of radium or true activity depend upon both source geometry and radionuclide identity. Because many of these conversion factors depend upon vendor choices of physical constants and exposure rate constants, readers are cautioned to carefully review vendor source strength specification practices before adopting these values clinically. Finally, the relationships between the various source strength quantities and absorbed dose rate in the medium surrounding the source are elucidated.
从历史上看,密封近距离放射治疗源的强度曾用许多物理量来描述,包括真实活度、表观活度和镭当量质量。最近,美国医学物理学家协会任务组32建议用一个单一的量——空气比释动能强度来取代这些量,其单位为μGy m²h⁻¹。已经开发出一组方程,用于明确地转换源强度估计值,并将假设传统量和单位的已发表剂量率表重新归一化,使其形式与空气比释动能强度一致。对于常用的近距离放射治疗源,给出了每种源强度形式和单位集的乘法转换因子。将镭当量质量转换为空气比释动能强度需要一个单一的乘法因子,即7.23μGy m²h⁻¹/mgRaEq,适用于所有源。基于对供应商源规格制定实践的审查,将¹⁹⁸Au、¹⁰³Pd和¹²⁵I种子源的源强度从表观毫居里转换为空气比释动能强度的因子分别为2.06、1.29和1.27μGy m²h⁻¹/mCi(表观)。这些因子与源的几何形状无关,但取决于供应商选择的标称照射率常数值。适用于镭质量或真实活度的转换因子既取决于源的几何形状,也取决于放射性核素的特性。由于这些转换因子中的许多都取决于供应商对物理常数和照射率常数的选择,因此提醒读者在临床采用这些值之前,要仔细审查供应商源强度规格制定实践。最后,阐明了各种源强度量与源周围介质中吸收剂量率之间的关系。