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Determination of Optimal Number of Projections and Parametric Sensitivity Analysis of Operators for Parallel-Ray Transmission Tomography using Hybrid Continuous Genetic Algorithm

机译:混合连续遗传算法的平行射线透射层析成像最佳投影数确定及算子参数敏感性分析

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In this work, a hybrid continuous genetic algorithm (HCGA) based methodology has been developed for optimization of number of projections for parallel-ray transmission tomography. The HCGA calculations with filtered back-projection (FBP) utilize 8 bits for both head and lung phantoms. The effect of selection operator through proportionate, truncation, and tournament schemes has been analyzed along with the introduction of a mixed-selection scheme. Image quality has been measured using root-mean-squared error, Euclidean error and peak signal-to-noise ratios. The sensitivity of reconstructed image quality on various mutation operators, namely standard, gradient-, and offset-based schemes, has been analyzed along with the effect of number of projections. The number of projections has resulted in maximization of image quality while minimizing the radiation hazard involved. The results of HCGA have been compared with FBP as a deterministic technique and simulated annealing (SA) as a stochastic technique for IRT approximation. For the 8 x 8 head and lung phantoms, HCGA, SA, FBP, have resulted PSNR values correspondingly as 40.47, 33.92, 8.28 and 26.38, 20.36, 12.98 dB.
机译:在这项工作中,已经开发出一种基于混合连续遗传算法(HCGA)的方法,用于优化平行射线透射层析成像的投影数量。带有滤波反投影(FBP)的HCGA计算将8位用于头部和肺部幻影。随着混合选择方案的引入,已经分析了选择算子通过比例,截断和锦标赛方案的效果。使用均方根误差,欧几里德误差和峰值信噪比来测量图像质量。已经分析了重构图像质量对各种变异算子(即基于标准,基于梯度和基于偏移的方案)的敏感性以及投影数量的影响。投影的数量已使图像质量最大化,同时将所涉及的辐射危害降至最低。 HCGA的结果已与FBP作为确定性技术进行了比较,而模拟退火(SA)作为IRT近似的随机技术进行了比较。对于8 x 8的头部和肺部幻像,HCGA,SA,FBP分别导致PSNR值为40.47、33.92、8.28和26.38、20.36、12.98 dB。

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