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A comparison of Gd-153 and Co-57 as transmission sources for simultaneous TCT and Tl-201 SPECT

机译:Gd-153和Co-57作为同时TCT和Tl-201 SPECT的传输源的比较

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The authors have previously described a method for simultaneous acquisition of TCT and Tl-201 SPECT using a Tc-99m transmission source. However, for clinical implementation Tc-99m is impractical, especially for high activity sources required for short acquisition times. In this study the authors investigated the potential of Gd-153 and Co-57 as transmission sources. Since both of these have higher energy photopeaks higher than the predominant Tl-201 photons, they will result in contamination of the emission data. Thus, the amount of contamination and the ease of compensating the contamination are important properties in selecting an isotope. The authors have investigated the amount of contamination for each of these sources as well as properties affecting the difficulty of contamination compensation. Based on these studies the authors conclude that, while Co-57 results in somewhat less contamination, contamination from Gd-153 may be easier to compensate for. As a result, selection of one of these isotopes may be based on other considerations such as cost and usability with other emission isotopes.
机译:作者先前已经描述了一种使用Tc-99m传输源同时获取TCT和Tl-201 SPECT的方法。然而,对于临床实施而言,Tc-99m是不切实际的,尤其是对于短采集时间所需的高活性来源。在这项研究中,作者研究了Gd-153和Co-57作为传播源的潜力。由于这两者都具有比主要的T1-201光子高的更高能量的光峰,因此它们将导致发射数据的污染。因此,在选择同位素时,污染量和补偿污染的难易程度是重要的特性。作者研究了每种污染源的污染量以及影响污染补偿难度的特性。基于这些研究,作者得出的结论是,虽然Co-57造成的污染少一些,但Gd-153的污染可能更容易弥补。结果,这些同位素之一的选择可以基于其他考虑,例如成本和与其他发射同位素的可用性。

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