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Conjugate-gradient preconditioning methods for shift-variant PET image reconstruction

机译:共轭梯度预处理方法用于移位变量PET图像重建

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Gradient-based iterative methods often converge slowly for tomographic image reconstruction and image restoration problems, but can be accelerated by suitable preconditioners. Diagonal preconditioners offer some improvement in convergence rate, but do not incorporate the structure of the Hessian matrices in imaging problems. Circulant preconditioners can provide remarkable acceleration for inverse problems that are approximately shift-invariant, i.e., for those with approximately block-Toeplitz or block-circulant Hessians. However, in applications with nonuniform noise variance, such as arises from Poisson statistics in emission tomography and in quantum-limited optical imaging, the Hessian of the weighted least-squares objective function is quite shift-variant, and circulant preconditioners perform poorly. Additional shift-variance is caused by edge-preserving regularization methods based on nonquadratic penalty functions. This paper describes new preconditioners that approximate more accurately the Hessian matrices of shift-variant imaging problems. Compared to diagonal or circulant preconditioning, the new preconditioners lead to significantly faster convergence rates for the unconstrained conjugate-gradient (CG) iteration. We also propose a new efficient method for the line-search step required by CG methods. Applications to positron emission tomography (PET) illustrate the method.
机译:对于层析图像重建和图像恢复问题,基于梯度的迭代方法通常收敛缓慢,但可以通过合适的预处理器来加速。对角前置条件可改善收敛速度,但不会在成像问题中结合使用Hessian矩阵的结构。循环预处理器可以为近似于位移不变的反问题(即,对于具有近似块托普利兹或近似块循环黑森州的反问题)提供显着的加速。但是,在具有不均匀噪声方差的应用中,例如由放射线断层摄影和量子受限光学成像中的泊松统计引起的,加权最小二乘目标函数的Hessian具有很大的位移变化性,并且循环预处理器的性能较差。额外的移动方差是由基于非二次罚函数的边沿保留正则化方法引起的。本文介绍了新的预处理器,它们可以更准确地近似偏移变量成像问题的黑森州矩阵。与对角线或循环式预处理相比,新的预处理器可显着加快无约束共轭梯度(CG)迭代的收敛速度。我们还为CG方法所需的线搜索步骤提出了一种新的有效方法。该方法在正电子发射断层扫描(PET)中的应用说明了该方法。

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