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Application of sigmoidal optimization to reconstruct nuclear medicine image: Comparison with filtered back projection and iterative reconstruction method

机译:乙型优化在重建核药物中的应用:与滤波后投影和迭代重建法的比较

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摘要

High levels for noise and a loss of true signal make the quantitative interpretation of nuclear medicine (NM) images difficult. An application of profile optimization using a sigmoidal function in this study was used to acquire the NM images with high quality. And the images were acquired by using three kinds of reconstruction method using each same sinogram: a standard filtered back-projection (FBP), an iterative reconstruction (IR) technique, and the sigmoidal function profile optimization (SFPO). Comparison of image according to reconstruction method was performed to show a superiority of the SFPO for imaging. The images reconstructed by using the SFPO showed an average of 1.49 times and of 1.17 times better in contrast than the results obtained using the standard FBP and the IR technique, respectively. Higher signal to noise ratios were obtained as an average of 12.30 times and of 3.77 times than results obtained using the standard FBP and the IR technique, respectively. This study confirms that reconstruction with SFPO (vsFBP andvsIR) can lead to better lesion detectability and characterization with noise reduction. It can be developed for future reconstruction technique for the NM imaging.
机译:噪声的高水平和真实信号的损失使核医学(NM)图像的定量解释变得困难。使用本研究中使用SIGMOID函数的简档优化应用来获得具有高质量的NM图像。通过使用三种重建方法来获取图像,使用相同的Sinogram:标准滤波后投影(FBP),迭代重建(IR)技术和Sigmoid函数轮廓优化(SFPO)。进行了根据重建方法的图像的比较,以显示SFPO用于成像的优越性。通过使用SFPO重建的图像平均分别比使用标准FBP和IR技术获得的结果的平均值为1.49倍,比对比度效果更好。获得噪声比率的较高的信号,分别获得了比使用标准FBP和IR技术获得的结果的12.30倍和3.77倍。本研究证实,使用SFPO(VSFBP和vsir)重建可以导致更好的病变可检测性和降噪表征。它可以开发用于NM成像的未来重建技术。

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