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Improved reconstruction for bioluminescence tomography by using the simplified spherical harmonics approximation model and homotopy method

机译:通过使用简化的球形谐波近似模型和同型方法改善了生物发光断层扫描的重建

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Bioluminescence tomography (BLT) is a promising molecular imaging tool that may play an important role in preclinical research. However, the accurate and stable reconstruction of interior targets remains a challenge for wide application of this imaging modality. We present a novel reconstruction scheme to improve the BLT result by using the simplified spherical harmonics approximation model and homotopy method. In order to accurately model light propagation in biological tissue, the best approximation order is determined by comparing results of the SPN model (N = 1, 3, 5) with the Monte Carlo (MC) simulation data. Based on this forward model, a two-stage reconstruction using l1 Homotopy algorithm is then performed. Experimental results on a digital mouse model demonstrate that proposed reconstruction method yield improved results in terms of location accuracy, reconstructed density and time cost.
机译:生物发光断层扫描(BLT)是一种有希望的分子成像工具,可在临床前研究中发挥重要作用。然而,内部目标的准确性和稳定的重建仍然是对这种成像模型的广泛应用挑战。我们介绍了一种新颖的重建方案,通过使用简化的球形谐波近似模型和同型方法来改善BLT结果。为了准确地模拟生物组织中的光传播,通过将SPN模型(n = 1,3,5)与蒙特卡罗(MC)模拟数据进行比较来确定最佳近似顺序。基于该前向模型,然后执行使用L1同型算法的两级重建。数字小鼠模型的实验结果表明,所提出的重建方法在定位精度,重建密度和时间成本方面提高了结果。

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