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Region-Based Partial Volume Correction Techniques for PET Imaging: Sinogram Implementation and Robustness

机译:PET成像的基于区域的部分体积校正技术:Singram实现和稳健性

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摘要

Background/Purpose. Limited spatial resolution of positron emission tomography (PET) requires partial volume correction (PVC). Region-based PVC methods are based on geometric transfer matrix implemented either in image-space (GTM) or sinogram-space (GTMo), both with similar performance. Although GTMo is slower, it more closely simulates the 3D PET image acquisition, accounts for local variations of point spread function, and can be implemented for iterative reconstructions. A recent image-based symmetric GTM (sGTM) has shown improvement in noise characteristics and robustness to misregistration over GTM. This study implements the sGTM method in sinogram space (sGTMo), validates it, and evaluates its performance. Methods. Two 3D sphere and brain digital phantoms and a physical sphere phantom were used. All four region-based PVC methods (GTM, GTMo, sGTM, and sGTMo) were implemented and their performance was evaluated. Results. All four PVC methods had similar accuracies. Both noise propagation and robustness of the sGTMo method were similar to those of sGTM method while they were better than those of GTMo method especially for smaller objects. Conclusion. The sGTMo was implemented and validated. The performance of the sGTMo in terms of noise characteristics and robustness to misregistration is similar to that of the sGTM method and improved compared to the GTMo method.
机译:背景/目的。正电子发射断层扫描(PET)的空间分辨率有限,需要部分体积校正(PVC)。基于区域的PVC方法基于在图像空间(GTM)或正弦图空间(GTMo)中实现的几何传递矩阵,两者的性能均相似。尽管GTMo速度较慢,但​​它可以更紧密地模拟3D PET图像采集,说明点扩散函数的局部变化,并且可以实现迭代重建。最近的基于图像的对称GTM(sGTM)已显示出噪声特性的改进以及对GTM配准错误的鲁棒性。本研究在正弦图空间(sGTMo)中实现sGTM方法,对其进行验证并评估其性能。方法。使用了两个3D球体和大脑数字体模以及一个物理球体体模。实施了所有四种基于区域的PVC方法(GTM,GTMo,sGTM和sGTMo),并评估了它们的性能。结果。四种PVC方法都具有相似的精度。 sGTMo方法的噪声传播和鲁棒性均与sGTM方法的相似,但它们优于GTMo方法,尤其是对于较小的物体。结论。 sGTMo已实施并验证。 sGTMo的性能在噪声特性和对位错误的鲁棒性方面与sGTM方法相似,并且与GTMo方法相比有所改进。

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