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首页> 外文期刊>Computational and mathematical methods in medicine >3D Alternating Direction TV-Based Cone-Beam CT Reconstruction with Efficient GPU Implementation
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3D Alternating Direction TV-Based Cone-Beam CT Reconstruction with Efficient GPU Implementation

机译:3D交替方向电视的锥形梁CT重建,高效GPU实现

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摘要

Iterative image reconstruction (IIR) with sparsity-exploiting methods, such as total variation (TV) minimization, claims potentially large reductions in sampling requirements. However, the computation complexity becomes a heavy burden, especially in 3D reconstruction situations. In order to improve the performance for iterative reconstruction, an efficient IIR algorithm for cone-beam computed tomography (CBCT) with GPU implementation has been proposed in this paper. In the first place, an algorithm based on alternating direction total variation using local linearization and proximity technique is proposed for CBCT reconstruction. The applied proximal technique avoids the horrible pseudoinverse computation of big matrix which makes the proposed algorithm applicable and efficient for CBCT imaging. The iteration for this algorithm is simple but convergent. The simulation and real CT data reconstruction results indicate that the proposed algorithm is both fast and accurate. The GPU implementation shows an excellent acceleration ratio of more than 100 compared with CPU computation without losing numerical accuracy. The runtime for the new 3D algorithm is about 6.8 seconds per loop with the image size of256×256×256and 36 projections of the size of512×512.
机译:具有稀疏性利用方法的迭代图像重建(IIR),例如总变化(TV)最小化,索赔对采样要求的潜在降低。然而,计算复杂性成为沉重的负担,特别是在3D重建情况下。为了提高迭代重建的性能,本文已经提出了一种高效的锥形束计算机断层扫描(CBCT)的高效IIR算法,并在本文中提出了GPU实现。首先,提出了一种基于使用本地线性化和接近技术的交替方向总变化的算法,用于CBCT重建。施加的近端技术避免了大矩阵的可怕伪计算,这使得该算法适用于CBCT成像。此算法的迭代简单但收敛。模拟和实际CT数据重建结果表明该算法既快速准确。与CPU计算相比,GPU实现显示出优异的加速度超过100,而不会损失数值准确性。每环的新3D算法的运行时间约为6.8秒,图像尺寸为256×256×256和36个尺寸为512×512的投影。

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