首页> 外文期刊>Nuclear Medicine Communications >Quantitative imaging of 223Ra-chloride (Alpharadin) for targeted alpha-emitting radionuclide therapy of bone metastases
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Quantitative imaging of 223Ra-chloride (Alpharadin) for targeted alpha-emitting radionuclide therapy of bone metastases

机译:223 Ra-氯化物(Alpharadin)的定量成像,用于靶向性α发射放射性核素治疗骨转移

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OBJECTIVE: 223Ra is an alpha particle emitter that targets areas of increased bone turnover in bone metastases. Alpha particles account for 95% of the 27.8 MeV emitted per decay. Less than 2% of the emissions are from photons. This means that a high absorbed dose will be delivered locally, although the number of photons for imaging will be low. The purpose of this study was to investigate the possibility of quantitative imaging of 223Ra to enable biodistribution studies. METHODS: A Philips Forte gamma camera, equipped with a medium-energy collimator, was used. Basic imaging parameters were determined from phantom studies, and the accuracy of activity quantification was tested in a phantom study and within a patient study. RESULTS: Imaging parameters were determined for the three most suitable photon peaks from the acquired energy spectrum (82, 154 and 270 keV). Camera sensitivity is constant for circular sources with areas greater than 10 cm 2. The spatial resolution (full-width at half-maximum) was 1.1 cm for each of the three energy windows. The possibility for quantitative imaging was further investigated for the 82 keV energy window, which showed the highest sensitivity and spatial resolution. A phantom study showed that activity could be quantified to within 10% for a 200 ml volume placed within water containing background activity and to within 50% for a 0.5 ml phantom. Quantification of activity in bone after administrations of 100 kBq/kg of 223Ra- chloride proved the feasibility of quantitative imaging of patients who have received radionuclide therapy. CONCLUSION: Because of the high-energy deposition of Ra, only a low injected activity is required for therapy, which results in a low count rate for the gamma camera. Nevertheless, this study has demonstrated that it is possible to quantify uptake with a sufficient degree of accuracy to obtain clinically relevant information.
机译:目的:223Ra是一种α粒子发射器,其目标是在骨转移中增加骨转换的区域。每次衰变发射的27.8 MeV中,α粒子占95%。不到2%的排放来自光子。这意味着,尽管用于成像的光子数量很少,但是高吸收剂量将被局部输送。这项研究的目的是调查223 Ra定量成像以实现生物分布研究的可能性。方法:使用配有中能准直仪的飞利浦Forte伽马相机。基本影像参数由幻像研究确定,活动定量的准确性在幻像研究和患者研究中进行了测试。结果:从获得的能谱(82、154和270 keV)确定了三个最合适的光子峰的成像参数。对于面积大于10 cm 2的圆形光源,相机灵敏度是恒定的。三个能量窗口的空间分辨率(半高全宽)为1.1 cm。对于82 keV能量窗口,定量成像的可能性得到了进一步研究,该窗口显示出最高的灵敏度和空间分辨率。幻像研究表明,对于放置在具有背景活性的水中的200毫升体积,活性可以量化为10%以内,而对于0.5毫升幻象,活性可以量化为50%以内。给予100 kBq / kg的223 Ra-氯化物后,对骨中的活性进行定量证明了对接受放射性核素治疗的患者进行定量成像的可行性。结论:由于Ra的高能量沉积,治疗仅需要较低的注射活性,这导致γ照相机的计数率较低。然而,这项研究表明,可以以足够的准确度量化摄取量以获得临床相关信息。

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