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基于路径长度的骨骼剂量学中浅层骨髓和脂肪组织的纳入方法。

Methods for the inclusion of shallow marrow and adipose tissue in pathlength-based skeletal dosimetry.

机构信息

Department of Physics and Astronomy, Francis Marion University, Florence, SC 29502-0547, USA.

出版信息

Phys Med Biol. 2011 May 7;56(9):2699-713. doi: 10.1088/0031-9155/56/9/004. Epub 2011 Apr 5.

Abstract

Distributions of linear pathlength measurements have been utilized in skeletal dosimetry of internally emitted short-range particles for over 30 years. This work reviews the methods for coupling these distributions to range-energy data. A revised methodology is presented for handling the insertion of the additional dosimetric target region (shallow marrow) and medium (adipose tissue) into the dosimetry algorithm. The methodology is shown to reduce the volume fraction of shallow marrow in the trabecular skeleton over existing methodologies. Finally, theoretical low and high-energy checkpoints are derived for use in checking the absorbed fraction and specific absorbed fraction results for a variety of source and target combinations.

摘要

线性路径长度测量的分布已在内部发射的短程粒子的骨骼剂量学中使用了 30 多年。这项工作回顾了将这些分布与射程-能量数据相结合的方法。提出了一种改进的方法来处理额外的剂量测定目标区域(浅层骨髓)和介质(脂肪组织)插入剂量测定算法。该方法被证明可以减少小梁骨骼中浅层骨髓的体积分数,超过现有方法。最后,推导出了理论上的低能和高能检查点,用于检查各种源和目标组合的吸收分数和特定吸收分数的结果。

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