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Improved Yields of Iodine-124 from the Enriched Tellurium-124 Dioxide/Aluminum Oxide Target

机译:从富二氧化碲124 /铝氧化物靶中提高的碘124产量

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The escalating clinical application of Positron Emission Tomography results from the novel radiotracers which arc available to monitor specific biochemical or physiologic processes. Future developments of the technique will require an increasing availability of additional unique radioligands and radionuclides. Iodine-124, a radionuclide whose potential for both diagnostic and therapeutic applications is widely recognized, has been prepared at Memorial Sloan-Ketlering Cancer Center on a weekly basis for several years (1). With its characteristic 4.18 day half life and complex decay scheme (2) which includes positron emission (22.0 +- 0.5%) and electron capture (78 +- 0.5%), this radionuclide has been shown to be appropriate for radiotracers describing slow physiologic processes with the clearance of nonspecific radioactivity. The refinements and modifications being engineered into the cyclotron target system to increase the absolute yield of recoverable radioactivity from each irradiation and its chemical processing of the reusable solid target matrix are described..
机译:正电子发射断层扫描技术在临床上的不断发展是由于新型放射性示踪剂可用于监测特定的生化或生理过程。该技术的未来发展将要求更多独特的放射性配体和放射性核素的可用性。 Iodine-124是一种放射性核素,其在诊断和治疗应用中的潜力都得到了广泛认可,并且已经在纪念斯隆-凯特琳癌症中心每周制备了几年(1)。该放射性核素具有特征性的4.18天半衰期和复杂的衰变方案(2),其中包括正电子发射(22.0±0.5%)和电子俘获(78±0.5%),已被证明适用于描述缓慢生理过程的放射性示踪剂清除非特异性放射性。描述了对回旋加速器靶系统进行改造以提高每次辐射可回收放射性的绝对产量及其对可重复使用的固体靶基质的化学处理的改进和改进。

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