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首页> 外文期刊>IEEE Transactions on Medical Imaging >Analysis of Resolution and Noise Properties of Nonquadratically Regularized Image Reconstruction Methods for PET
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Analysis of Resolution and Noise Properties of Nonquadratically Regularized Image Reconstruction Methods for PET

机译:PET非二次正则化图像重建方法的分辨率和噪声特性分析

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We present accurate and efficient methods for estimating the spatial resolution and noise properties of nonquadratically regularized image reconstruction for positron emission tomography (PET). It is well known that quadratic regularization tends to over-smooth sharp edges. Many types of edge-preserving nonquadratic penalties have been proposed to overcome this problem. However, there has been little research on the quantitative analysis of nonquadratic regularization due to its nonlinearity. In contrast, quadratically regularized estimators are approximately linear and are well understood in terms of resolution and variance properties. We derive new approximate expressions for the linearized local perturbation response (LLPR) and variance using the Taylor expansion with the remainder term. Although the expressions are implicit, we can use them to accurately predict resolution and variance for nonquadratic regularization where the conventional expressions based on the first-order Taylor truncation fail. They also motivate us to extend the use of a certainty-based modified penalty to nonquadratic regularization cases in order to achieve spatially uniform perturbation responses, analogous to uniform spatial resolution in quadratic regularization. Finally, we develop computationally efficient methods for predicting resolution and variance of nonquadratically regularized reconstruction and present simulations that illustrate the validity of these methods.
机译:我们提出了准确有效的方法来估计正电子发射断层扫描(PET)的非二次正则化图像重建的空间分辨率和噪声特性。众所周知,二次正则化倾向于使尖锐边缘过度平滑。为了克服该问题,已经提出了许多类型的保边非二次惩罚。然而,由于非线性的非二次正则化的定量分析研究很少。相反,二次正则估计量大约是线性的,并且在分辨率和方差性质方面已广为人知。我们使用泰勒展开式和剩余项推导线性化局部扰动响应(LLPR)和方差的新近似表达式。尽管这些表达式是隐式的,但我们可以使用它们来准确预测非二次正则化的分辨率和方差,在这种情况下,基于一阶泰勒截断的常规表达式会失败。它们还激励我们将基于确定性的修正惩罚的使用扩展到非二次正则化情况,以实现空间统一的摄动响应,类似于二次正则化中的统一空间分辨率。最后,我们开发了计算有效的方法来预测非二次正则化重构的分辨率和方差,并提供了说明这些方法有效性的仿真。

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