Siegel J A, Harpen M D, Lee W P, Verma R C, Greenfield M A
Eur J Nucl Med. 1984;9(11):494-8. doi: 10.1007/BF00263252.
Unlike 123I, sodium pertechnetate Tc99m is known to be trapped by the thyroid gland without being further processed. Whether this property alone explains the total difference between the early thyroid uptake of these two isotopes was studied in a group of goitrous patients. The absolute activities of 99mTc were measured by a conjugate-view counting method and those of 123I by a coincidence counting method. The uptake was continuously registered to give uptake curves which were analyzed according to a three-compartment model of the thyroid. Both isotopes are postulated to bind to some carriers and then to be transported into the thyroid gland before they are further metabolized. Although the differences observed between the two uptakes were somewhat model dependent, the application of compartmental analysis provides a more detailed description of the differences between the two uptakes which occur even before the organification step.
与123I不同,已知锝99m高锝酸钠会被甲状腺摄取而不被进一步处理。在一组甲状腺肿患者中研究了是否仅这一特性就能解释这两种同位素早期甲状腺摄取的总体差异。通过共轭视图计数法测量99mTc的绝对活度,通过符合计数法测量123I的绝对活度。连续记录摄取情况以得到摄取曲线,并根据甲状腺的三室模型对其进行分析。两种同位素都被假定先与某些载体结合,然后在进一步代谢之前被转运到甲状腺中。尽管观察到的两种摄取之间的差异在一定程度上依赖于模型,但房室分析的应用提供了对两种摄取之间差异更详细的描述,这些差异甚至在有机化步骤之前就已出现。