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The Influence of Photon Attenuation on Tumor-to-Background and Signal-to-Noise Ratios for SPECT Imaging

机译:光子衰减对SPECT成像的肿瘤背景和信噪比的影响

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摘要

Expanding on the work of Nuyts et. al [], Bai et. al. [], and Bai and Shao [], who all studied the effects of attenuation and attenuation correction on tumor-to-background ratios and signal detection, we have derived a general expression for the tumor-to-background ratio (TBR) for SPECT attenuated data that have been reconstructed with a linear, non-iterative reconstruction operator O. A special case of this is when O represents discrete filtered back-projection (FBP). The TBR of the reconstructed, uncorrected attenuated data (TBRno-AC) can be written as a weighted sum of the TBR of the FBP-reconstructed unattenuated data (TBRFBP) and the TBR of the FBP-reconstructed “difference” projection data (TBRdiff). We evaluated the expression for TBRno-AC for a variety of objects and attenuation conditions. The ideal observer signal-to-noise ratio (SNRideal) was also computed in projection space, in order to obtain an upper bound on signal detectability for a signal-known-exactly/background-known-exactly (SKE/BKE) detection task. The results generally show that SNRideal is lower for tumors located deeper within the attenuating medium and increases for tumors nearer the edge of the object. In addition, larger values for the uniform attenuation coefficient μ lead to lower values for SNRideal. The TBR for FBP-reconstructed, uncorrected attenuated data can both under- and over-estimate the true TBR, depending on several properties of the attenuating medium, including the shape of the attenuator, the uniformity of the attenuator, and the degree to which the data are attenuated.
机译:扩大Nuyts等的工作。 al [],Bai等。等[],以及Bai和Shao [],他们都研究了衰减和衰减校正对肿瘤与背景之比和信号检测的影响,我们得出了SPECT的肿瘤与背景之比(TBR)的一般表达式衰减的数据,这些数据已使用线性非迭代重建算子O重建。这种特殊情况是O代表离散滤波反投影(FBP)。重建的,未校正的衰减数据(TBRno-AC)的TBR可以写为FBP重建的非衰减数据(TBRFBP)的TBR和FBP重建的“差异”投影数据(TBRdiff)的TBR的加权和。 。我们评估了TBRno-AC在各种物体和衰减条件下的表达。在投影空间中还计算了理想的观察者信噪比(SNRideal),以便为信号精确已知/背景精确确定(SKE / BKE)检测任务获得信号可检测性的上限。结果通常表明,对于位于衰减介质内较深处的肿瘤,SNRideal较低,而对于靠近物体边缘的肿瘤,SNRideal较高。另外,均匀衰减系数μ的较大值导致SNRideal的较低值。 FBP重建的,未校正的衰减数据的TBR可能会低估或高估真实TBR,这取决于衰减介质的几种特性,包括衰减器的形状,衰减器的均匀性以及衰减的程度。数据被衰减。

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