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Toward quantitative small animal pinhole SPECT: assessment of quantitation accuracy prior to image compensations.

机译:走向定量小动物针孔SPECT:在进行图像补偿之前评估定量准确性。

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摘要

PURPOSE: We assessed the quantitation accuracy of small animal pinhole single photon emission computed tomography (SPECT) under the current preclinical settings, where image compensations are not routinely applied. PROCEDURES: The effects of several common image-degrading factors and imaging parameters on quantitation accuracy were evaluated using Monte-Carlo simulation methods. Typical preclinical imaging configurations were modeled, and quantitative analyses were performed based on image reconstructions without compensating for attenuation, scatter, and limited system resolution. RESULTS: Using mouse-sized phantom studies as examples, attenuation effects alone degraded quantitation accuracy by up to -18% (Tc-99m or In-111) or -41% (I-125). The inclusion of scatter effects changed the above numbers to -12% (Tc-99m or In-111) and -21% (I-125), respectively, indicating the significance of scatter in quantitative I-125 imaging. Region-of-interest (ROI) definitions have greater impacts on regional quantitation accuracy for small sphere sources as compared to attenuation and scatter effects. For the same ROI, SPECT acquisitions using pinhole apertures of different sizes could significantly affect the outcome, whereas the use of different radii-of-rotation yielded negligible differences in quantitation accuracy for the imaging configurations simulated. CONCLUSIONS: We have systematically quantified the influence of several factors affecting the quantitation accuracy of small animal pinhole SPECT. In order to consistently achieve accurate quantitation within 5% of the truth, comprehensive image compensation methods are needed.
机译:目的:我们评估了在当前临床前设置下常规不应用图像补偿的小动物针孔单光子发射计算机断层扫描(SPECT)的定量准确性。程序:使用蒙特卡洛模拟方法评估了几种常见的图像降解因子和成像参数对定量精度的影响。对典型的临床前成像配置进行了建模,并基于图像重建进行了定量分析,而没有补偿衰减,散射和有限的系统分辨率。结果:以小鼠大小的幻像研究为例,仅衰减效应会使定量准确度降低高达-18%(Tc-99m或In-111)或-41%(I-125)。包含散射效应将上述数字分别更改为-12%(Tc-99m或In-111)和-21%(I-125),表明散射在定量I-125成像中的重要性。与衰减和散射效应相比,感兴趣区域(ROI)定义对小球形光源的区域定量精度有更大的影响。对于相同的ROI,使用不同大小的针孔的SPECT采集可能会显着影响结果,而对于不同的成像配置,使用不同的旋转半径可以在定量精度上产生可忽略的差异。结论:我们已经系统地量化了影响小动物针孔SPECT定量准确度的几个因素的影响。为了始终如一地在5%的真值内实现准确的定量,需要全面的图像补偿方法。

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