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An accelerated photo-magnetic imaging reconstruction algorithm based on an analytical forward solution and a fast Jacobian assembly method

机译:基于解析正解和快速雅可比汇编方法的加速光磁成像重建算法

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摘要

We previously introduced photo-magnetic imaging (PMI), an imaging technique that illuminates the medium under investigation with near-infrared light and measures the induced temperature increase using magnetic resonance thermometry (MRT). Using a multiphysics solver combining photon migration and heat diffusion, PMI models the spatiotemporal distribution of temperature variation and recovers high resolution optical absorption images using these temperature maps. In this paper, we present a new fast non-iterative reconstruction algorithm for PMI. This new algorithm uses analytic methods during the resolution of the forward problem and the assembly of the sensitivity matrix. We validate our new analytic-based algorithm with the first generation finite element method (FEM) based reconstruction algorithm previously developed by our team. The validation is performed using, first synthetic data and afterwards, real MRT measured temperature maps. Our new method accelerates the reconstruction process 30-fold when compared to a single iteration of the FEM-based algorithm.
机译:我们先前介绍了光磁成像(PMI),这是一种成像技术,可以用近红外光照射被测介质,并使用磁共振测温(MRT)测量引起的温度升高。使用结合了光子迁移和热扩散的多物理场求解器,PMI对温度变化的时空分布进行建模,并使用这些温度图恢复高分辨率的光学吸收图像。在本文中,我们提出了一种新的PMI快速非迭代重建算法。该新算法在正向问题的解决和灵敏度矩阵的组装过程中使用了解析方法。我们使用我们团队先前开发的基于第一代有限元方法(FEM)的重建算法来验证我们基于分析的新算法。首先使用合成数据,然后使用实际的MRT测量温度图进行验证。与基于FEM的算法的单次迭代相比,我们的新方法将重建过程加快了30倍。

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