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Device-dependent activity estimation and decay correction of radionuclide mixtures with application to Tc-94m PET studies.

机译:放射性核素混合物的与装置有关的活性估计和衰变校正在Tc-94m PET研究中的应用。

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摘要

Multi-instrument activity estimation and decay correction techniques were developed for radionuclide mixtures, motivated by the desire for accurate quantitation of Tc-94m positron emission tomography (PET) studies. Tc-94m and byproduct Tc isotopes were produced by proton irradiation of enriched Mo-94 and natural Mo targets. Mixture activities at the end of bombardment were determined with a calibrated high purity germanium detector. The activity fractions of the greatest mixture impurities relative to 100% for Tc-94m averaged 10.0% (Tc-94g) and 3.3% (Tc-93) for enriched targets and 10.1% (Tc-94g), 11.0% (Tc-95), 255.8% (Tc-96m), and 7.2% (Tc-99m) for natural targets. These radioisotopes have different half-lives (e.g., 52.5 min for Tc-94m, 293 min for Tc-94g), positron branching ratios (e.g., 0.72 for Tc-94m, 0.11 for Tc-94g) and gamma ray emissions for themselves and their short-lived, excited Mo daughters. This complicates estimation of injected activity with a dose calibrator, in vivo activity with PET and blood sample activity with a gamma counter. Decay correction using only the Tc-94m half-life overestimates activity and is inadequate. For this reason analytic formulas for activity estimation and decay correction of radionuclide mixtures were developed. Isotope-dependent sensitivity factors for a PET scanner, dose calibrator, and gamma counter were determined using theoretical sensitivity models and fits of experimental decay curves to sums of exponentials with fixed decay rates. For up to 8 h after the end of bombardment with activity from enriched and natural Mo targets, decay-corrected activities were within 3% of the mean for three PET studies of a uniform cylinder, within 3% of the mean for six dose calibrator decay studies, and within 6% of the mean for four gamma counter decay studies. Activity estimation and decay correction for Tc-94m mixtures enable routine use of Tc-94m in quantitative PET, as illustrated by application to a canine Tc-94m sestamibi study.
机译:出于对Tc-94m正电子发射断层扫描(PET)研究进行准确定量的需求,开发了用于放射性核素混合物的多仪器活度估计和衰变校正技术。 Tc-94m和副产物Tc同位素是通过质子辐照富Mo-94和天然Mo靶标产生的。轰击结束时的混合物活性用校准的高纯度锗检测器测定。相对于100%的Tc-94m,最大混合杂质的活度分数平均为富集靶标的10.0%(Tc-94g)和3.3%(Tc-93),分别为10.1%(Tc-94g),11.0%(Tc-95) ),自然目标的255.8%(Tc-96m)和7.2%(Tc-99m)。这些放射性同位素具有不同的半衰期(例如,Tc-94m为52.5分钟,Tc-94g为293分钟),正电子支化比(例如Tc-94m为0.72,Tc-94g为0.11)以及它们自身和其他化合物的伽马射线发射他们短暂而激动的莫女儿。这使剂量校准器的注射活性,PET的体内活性和伽玛计数器的血样活性的估算复杂化。仅使用Tc-94m半衰期进行的衰变校正会高估活性,并且不足。因此,开发了用于放射性核素混合物活度估算和衰变校正的解析公式。 PET扫描仪,剂量校准器和伽玛计数器的同位素依赖性灵敏度因子是使用理论灵敏度模型确定的,并通过实验衰减曲线拟合固定衰减率的指数求和。在轰炸结束后长达8小时,富集和天然Mo靶标的活性,校正后的活性在均布圆筒的三个PET研究平均值的3%之内,在六剂量校准品衰变平均值的3%之内研究,且四项伽玛反衰减研究的平均值均在6%以内。 Tc-94m混合物的活度估计和衰变校正使Tc-94m可以在定量PET中常规使用,如在犬Tc-94m sestamibi研究中的应用所示。

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