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一种针对格雷夫斯病患者特异性放射性碘治疗的剂量测定方法,纳入了治疗引起的甲状腺体积变化。

A dosimetric approach to patient-specific radioiodine treatment of Graves' disease with incorporation of treatment-induced changes in thyroid mass.

作者信息

Traino A Claudio, Di Martino Fabio, Lazzeri Mauro

机构信息

U.O. Fisica Sanitaria, Sezione di Fisica Medica, Azienda Ospedaliera-Universitaria "Spedali Riuniti di S. Chiara," Pisa, Italy.

出版信息

Med Phys. 2004 Jul;31(7):2121-7. doi: 10.1118/1.1763411.

Abstract

The traditional algorithms (Marinelli-Quimby and MIRD) used for the absorbed dose calculation in radionuclide therapy generally assume that the mass of the target organs does not change with time. In radioiodine therapy for Graves' disease this approximation may not be valid. In this paper a mathematical model of thyroid mass reduction during the clearance phase (30-35 days) after 131I administration to patients with Graves' disease is presented. A new algorithm for the absorbed dose calculation is derived, taking into account the reduction of the mass of the gland resulting from the 131I therapy. It is demonstrated that thyroid mass reduction has a considerable effect on the calculated radiation dose. Either the model of the thyroid mass reduction or the new equation for the absorbed dose calculation depend on a parameter k for each patient. This parameter can be calculated after the administration of a diagnostic amount of radioiodine activity (0.37-1.85 MBq). Thus, thyroid absorbed dose and thyroid mass reduction during the first month after therapy can be predicted before therapy administration. The absorbed dose values calculated by the new algorithm are compared to those calculated by the traditional Marinelli-Quimby and MIRD algorithms.

摘要

用于放射性核素治疗中吸收剂量计算的传统算法(Marinelli - Quimby算法和MIRD算法)通常假定靶器官的质量不随时间变化。在格雷夫斯病的放射性碘治疗中,这种近似可能并不成立。本文提出了一个关于格雷夫斯病患者接受¹³¹I治疗后清除期(30 - 35天)甲状腺质量减少的数学模型。推导了一种新的吸收剂量计算算法,该算法考虑了¹³¹I治疗导致的甲状腺质量减少。结果表明,甲状腺质量减少对计算出的辐射剂量有相当大的影响。甲状腺质量减少模型或吸收剂量计算新方程都依赖于每个患者的参数k。该参数可在给予诊断剂量的放射性碘活度(0.37 - 1.85 MBq)后计算得出。因此,在治疗给药前就能预测治疗后第一个月内的甲状腺吸收剂量和甲状腺质量减少情况。将新算法计算出的吸收剂量值与传统的Marinelli - Quimby算法和MIRD算法计算出的值进行了比较。

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