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数字乳腺断层合成中的剂量学评估:蒙特卡罗技术。

Dosimetry in Digital Breast Tomosynthesis Evaluated by Monte Carlo Technique.

机构信息

Departamento de Física, Universidade Federal de Sergipe (UFS), São Cristóvão, Sergipe, Brazil.

Instituto Federal da Bahia (IFBA), Vitória da Conquista, BA, Brazil.

出版信息

Health Phys. 2021 Jul 1;121(1):18-29. doi: 10.1097/HP.0000000000001407.

DOI:10.1097/HP.0000000000001407
PMID:33867436
Abstract

The influence of the angular deviation of the tube during digital breast tomosynthesis (DBT) acquisition to the dose in the examined breast and in other organs and tissues is not well known. In this work, the Monte Carlo method was used with an adult female virtual anthropomorphic phantom to investigate the impact of this angular variation on the breast dose. The absorbed dose in the examined breast was normalized by the air kerma, which resulted in an absorbed dose coefficient (DT/Kair) for the breast. The absorbed dose in each organ was normalized by the glandular dose in the breast, resulting in the relative organ dose (ROD). An adult female virtual anthropomorphic phantom (FSTA_M50_H50) was incorporated into a scenario containing tomosynthesis equipment with Mo/Mo, Mo/Rh, and W/Rh target/filter combinations and tube voltages of 28 kV. The comparison between the results of the simulations considering digital mammography (DM) and DBT data showed that the DT/Kair values for the examined breast obtained with the DBT parameters were up to 24 times higher than with the DT/Kair obtained with DM parameters. A DT/Kair of 0.97 × 10-1 mGy mGy-1 was obtained in a DBT exam of the right breast. Considering the other organs, the highest ROD values were observed in the thyroid (6.45 × 10-4), eyes (3.87 × 10-4), liver (1.95 × 10-5), and eye lenses (3.21 × 10-3). A variation in the absorbed dose values for the breast and other organs was observed for all projections different from 0°.

摘要

在数字乳腺断层合成(DBT)采集过程中,管的角度偏差对受检乳房和其他器官和组织的剂量的影响尚不清楚。在这项工作中,使用蒙特卡罗方法和一个成年女性虚拟人体模型来研究这种角度变化对乳房剂量的影响。受检乳房的吸收剂量通过空气比释动能归一化,得到乳房的吸收剂量系数(DT/Kair)。每个器官的吸收剂量通过乳房中的腺体剂量归一化,得到相对器官剂量(ROD)。一个成年女性虚拟人体模型(FSTA_M50_H50)被纳入一个包含断层合成设备的场景中,该设备具有 Mo/Mo、Mo/Rh 和 W/Rh 靶/滤光片组合以及 28 kV 的管电压。考虑到数字乳腺摄影(DM)和 DBT 数据的模拟结果之间的比较表明,使用 DBT 参数获得的受检乳房的 DT/Kair 值比使用 DM 参数获得的 DT/Kair 值高 24 倍。在右侧乳房的 DBT 检查中,获得了 0.97×10-1 mGy mGy-1 的 DT/Kair 值。考虑到其他器官,甲状腺(6.45×10-4)、眼睛(3.87×10-4)、肝脏(1.95×10-5)和眼晶状体(3.21×10-3)的 ROD 值最高。对于所有不同角度的投影,都观察到乳房和其他器官的吸收剂量值发生了变化。

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