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3D Light Source Reconstruction with Spatial Filter forFluorescence/Bioluminescence Diffuse Optical Tomography

机译:3D光源重建与空间过滤器Fororescence / Biol发光弥漫光学断层扫描

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A 3D reconstruction of light sources in biological medium with spatial filtering and updating of the forward model is simulated numerically with use of the optical properties of mouse. The spatial filters locate the strong sources in the medium. The estimated source strength is used to remove the source positions which are not contributed to the measurement data, and improved the spatial resolution of spatial filtering. The forward model updated by spatial filtering is useful to reduce the noises by using singular value decomposition. By removing the noise space from the measurement data, the noises are reduced. The numerical simulations with a numerical phantom with the optical properties of mouse showed that the proposed method succeeded in localizing the sources in a 3D medium and that the additional noise reduction improved the reconstructed images. The proposed reconstruction scheme including the noise reduction achieves robust reconstruction of the light source distribution from the noisy measurement data and incorrect information of the optical properties of the measured subject.
机译:利用鼠标的光学性质在数值上模拟了具有空间滤波和更新的生物介质中的光源的3D重建。空间滤波器定位介质中的强源。估计的源强度用于去除对测量数据没有贡献的源位置,并改善了空间滤波的空间分辨率。空间过滤更新的前向模型可通过使用奇异值分解来减少噪声。通过从测量数据中移除噪声空间,减少了噪声。具有鼠标光学性质的数值模拟的数值模拟表明,所提出的方法成功地定位3D介质中的源,并且额外的降噪改进了重建的图像。所提出的重建方案包括降噪,从嘈杂的测量数据和测量对象的光学性质的错误信息达到了鲁棒重建的光源分布。

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