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Quantitative multi-pinhole small-animal SPECT: uniform versus non-uniform Chang attenuation correction.

机译:定量多针孔小动物SPECT:均匀和不均匀的Chang衰减校正。

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Attenuation of photon flux on trajectories between the source and pinhole apertures affects the quantitative accuracy of reconstructed single-photon emission computed tomography (SPECT) images. We propose a Chang-based non-uniform attenuation correction (NUA-CT) for small-animal SPECT/CT with focusing pinhole collimation, and compare the quantitative accuracy with uniform Chang correction based on (i) body outlines extracted from x-ray CT (UA-CT) and (ii) on hand drawn body contours on the images obtained with three integrated optical cameras (UA-BC). Measurements in phantoms and rats containing known activities of isotopes were conducted for evaluation. In (125)I, (201)Tl, (99m)Tc and (111)In phantom experiments, average relative errors comparing to the gold standards measured in a dose calibrator were reduced to 5.5%, 6.8%, 4.9% and 2.8%, respectively, with NUA-CT. In animal studies, these errors were 2.1%, 3.3%, 2.0% and 2.0%, respectively. Differences in accuracy on average between results of NUA-CT, UA-CT and UA-BC were less than 2.3% in phantom studies and 3.1% in animal studies except for (125)I (3.6% and 5.1%, respectively). All methods tested provide reasonable attenuation correction and result in high quantitative accuracy. NUA-CT shows superior accuracy except for (125)I, where other factors may have more impact on the quantitative accuracy than the selected attenuation correction.
机译:光子通量在源孔和针孔孔径之间的轨迹上的衰减会影响重建的单光子发射计算机断层扫描(SPECT)图像的定量精度。我们针对聚焦针孔准直的小动物SPECT / CT提出了基于Chang的非均匀衰减校正(NUA-CT),并基于(i)从X射线CT提取的身体轮廓,将定量准确性与均匀Chang校正进行了比较(UA-CT)和(ii)在三个集成光学相机(UA-BC)获得的图像上绘制人体轮廓。进行了包含已知同位素活性的体模和大鼠的测量,以进行评估。在(125)I,(201)T1,(99m)Tc和(111)幻像实验中,与在剂量校准器中测得的金标准品相比,平均相对误差降低到5.5%,6.8%,4.9%和2.8%分别使用NUA-CT。在动物研究中,这些误差分别为2.1%,3.3%,2.0%和2.0%。幻影研究中,NUA-CT,UA-CT和UA-BC结果之间的平均准确度差异小于(125)I(分别为3.6%和5.1%),在动物研究中小于2.3%,在动物研究中小于3.1%。所有测试的方法均提供合理的衰减校正,并具有很高的定量精度。 NUA-CT除了(125)I以外,还显示出更高的准确度,在其他方面,其他因素可能对定量准确度的影响要大于所选的衰减校正。

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