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首页> 外文期刊>IEEE Transactions on Medical Imaging >Quantitative PET with positron emitters that emit prompt gamma rays
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Quantitative PET with positron emitters that emit prompt gamma rays

机译:带正电子发射器的定量PET,可发射迅速的伽马射线

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摘要

The purpose of this work was to determine the feasibility of using positron emitting isotopes that emit prompt gammas to acquire quantitative positron emission tomography (PET) data using standard PET instrumentation. Prompt gammas can contaminate PET data by increasing dead time, converting singles into invalid coincidences, and producing multiple coincidences which can lead to the replacement of valid coincidences by invalid coincidences. The measurements in this work were made by scanning point sources containing F-18, Na-22, and Co-60 and studying the effects of the prompt gammas on the PET data, We found that for the Na-22 point source, the annihilation photon coincidence rate was about 25 times the prompt gamma-annihilation photon coincidence rate in the entire active volume of the scanner. With scatter, the Na-22 prompt gamma-annihilation photon coincidence rate was 1.3 times higher than the F-18 scatter coincidence rate. The most significant effect of the prompt gamma was to increase dead time; the dead time correction factor for Cu-60 was 2.4 times higher than the correction factor for N-13 for the same source activity. We conclude that, in many cases, quantitative PET data can be readily obtained with isotopes that emit prompt gammas, using standard PET 2-D instrumentation. However there are some cases, such as 3-D PET, where prompt gammas could significantly contaminate the PET data.
机译:这项工作的目的是确定使用发射快速伽玛的正电子发射同位素来使用标准PET仪器获取定量正电子发射断层扫描(PET)数据的可行性。即时伽玛可以通过增加停滞时间,将单次转换为无效巧合并产生多个巧合来污染PET数据,这些巧合可以导致用无效巧合代替有效巧合。通过扫描包含F-18,Na-22和Co-60的点源并研究即时伽玛对PET数据的影响,进行了这项工作中的测量,我们发现对于Na-22点源,an灭在扫描仪的整个活动空间中,光子符合率约为瞬态伽马歼灭光子符合率的25倍。发生散射时,Na-22瞬发的-灭光子符合率比F-18散射符合率高1.3倍。即时伽玛效应最显着的效果是增加了死区时间。对于相同的源活动,Cu-60的空载时间校正因子比N-13的校正因子高2.4倍。我们得出的结论是,在许多情况下,使用标准的PET 2-D仪器,可以通过发出快速伽玛值的同位素轻松获得定量的PET数据。但是,在某些情况下(例如3-D PET),即时伽玛值可能会严重污染PET数据。

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