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器官 S 价值和受 I-131 治疗的成年患者家属的有效剂量:一项蒙特卡罗模拟研究。

Organ S values and effective doses for family members exposed to adult patients following I-131 treatment: a Monte Carlo simulation study.

机构信息

Department of Radiation Oncology, University of Arkansas Medical Sciences, Little Rock, Arkansas 72205, USA.

出版信息

Med Phys. 2013 Aug;40(8):083901. doi: 10.1118/1.4812425.

Abstract

PURPOSE

To calculate organ S values (mGy∕Bq-s) and effective doses per time-integrated activity (mSv∕Bq-s) for pediatric and adult family members exposed to an adult male or female patient treated with I-131 using a series of hybrid computational phantoms coupled with a Monte Carlo radiation transport technique.

METHODS

A series of pediatric and adult hybrid computational phantoms were employed in the study. Three different exposure scenarios were considered: (1) standing face-to-face exposures between an adult patient and pediatric or adult family phantoms at five different separation distances; (2) an adult female patient holding her newborn child, and (3) a 1-yr-old child standing on the lap of an adult female patient. For the adult patient model, two different thyroid-related diseases were considered: hyperthyroidism and differentiated thyroid cancer (DTC) with corresponding internal distributions of 131I. A general purpose Monte Carlo code, MCNPX v2.7, was used to perform the Monte Carlo radiation transport.

RESULTS

The S values show a strong dependency on age and organ location within the family phantoms at short distances. The S values and effective dose per time-integrated activity from the adult female patient phantom are relatively high at shorter distances and to younger family phantoms. At a distance of 1 m, effective doses per time-integrated activity are lower than those values based on the NRC (Nuclear Regulatory Commission) by a factor of 2 for both adult male and female patient phantoms. The S values to target organs from the hyperthyroid-patient source distribution strongly depend on the height of the exposed family phantom, so that their values rapidly decrease with decreasing height of the family phantom. Active marrow of the 10-yr-old phantom shows the highest S values among family phantoms for the DTC-patient source distribution. In the exposure scenario of mother and baby, S values and effective doses per time-integrated activity to the newborn and 1-yr-old phantoms for a hyperthyroid-patient source are higher than values for a DTC-patient source.

CONCLUSIONS

The authors performed realistic assessments of 131I organ S values and effective dose per time-integrated activity from adult patients treated for hyperthyroidism and DTC to family members. In addition, the authors' studies consider Monte Carlo simulated "mother and baby∕child" exposure scenarios for the first time. Based on these results, the authors reconfirm the strong conservatism underlying the point source method recommended by the US NRC. The authors recommend that various factors such as the type of the patient's disease, the age of family members, and the distance∕posture between the patient and family members must be carefully considered to provide realistic dose estimates for patient-to-family exposures.

摘要

目的

利用一系列混合计算体模和蒙特卡罗辐射输运技术,计算接受 I-131 治疗的成年男性或女性患者的儿科和成年家庭成员的器官 S 值(mGy∕Bq-s)和单位时间积分活度的有效剂量(mSv∕Bq-s)。

方法

本研究采用了一系列儿科和成年混合计算体模。考虑了三种不同的暴露情况:(1)在五个不同的距离处,成年患者与儿科或成年家庭成员体模面对面站立的暴露;(2)成年女性患者抱着她的新生儿;(3)1 岁儿童站在成年女性患者的腿上。对于成年患者模型,考虑了两种不同的甲状腺相关疾病:甲状腺功能亢进症和分化型甲状腺癌(DTC),并相应地分布了 131I。使用通用蒙特卡罗代码 MCNPX v2.7 进行蒙特卡罗辐射输运。

结果

在近距离处,S 值强烈依赖于家庭体模内的年龄和器官位置。来自成年女性患者体模的 S 值和单位时间积分活度的有效剂量在较短的距离和更年轻的家庭体模中相对较高。在 1 米的距离处,来自成年男性和女性患者体模的有效剂量比基于核监管委员会(NRC)的剂量低 2 倍。来自甲状腺功能亢进症患者源分布的靶器官 S 值强烈依赖于暴露家庭体模的高度,因此随着家庭体模高度的降低,它们的值迅速下降。对于 DTC 患者源分布,10 岁体模的活性骨髓显示出家庭体模中最高的 S 值。在母亲和婴儿的暴露场景中,来自甲状腺功能亢进症患者源的新生儿和 1 岁儿童体模的 S 值和单位时间积分活度的有效剂量高于来自 DTC 患者源的剂量。

结论

作者对接受甲状腺功能亢进症和 DTC 治疗的成年患者的家庭成员进行了 131I 器官 S 值和单位时间积分活度的实际评估。此外,作者的研究首次考虑了蒙特卡罗模拟的“母亲和婴儿∕儿童”暴露场景。基于这些结果,作者再次确认了美国 NRC 推荐的点源方法所具有的强烈保守性。作者建议,必须仔细考虑患者疾病的类型、家庭成员的年龄以及患者与家庭成员之间的距离∕姿势等各种因素,以提供患者对家庭成员暴露的实际剂量估计。

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