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Fundamental Imaging Properties of Transillumination Laser Computed Tomography Based on Coherent Detection Imaging Method

机译:基于相干检测成像方法的透照激光计算机断层扫描的基本成像特性

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摘要

The coherent detection imaging (CDI) method the optical heterodyne detection technique. CW and single frequency lasers having long coherence lengths are used to exploit the maximum advantages of heterodyne detection, such as high directionality, selectivity and sensitivity. The CDI method based on optical heterodyne detection enables selective filtering of the directional coherence-retaining emergent photons, which leads to image reconstruction from projections, similar to X-ray computed tomography (CT). So far we have demonstrated the advantages and capabilities of the measurement technique for transillumi-nation optical computed tomography in biomedicine. Here, we investigate the fundamental imaging properties of CDI method, such as its high directionality and quantitativeness, with preliminary physical phantom experiments. The results show that the CDI method satisfies the requirements for CT reconstruction under the first order approximation, and enables quantitative measurements in the sense that the relationship between estimated and actual concentration retains a satisfactory linearity.
机译:相干检测成像(CDI)方法是光学外差检测技术。具有长相干长度的连续波和单频激光器用于开发外差检测的最大优点,例如高方向性,选择性和灵敏度。基于光学外差检测的CDI方法能够选择性过滤保持方向相干的出射光子,类似于X射线计算机断层扫描(CT),从而可以根据投影图像进行重建。到目前为止,我们已经证明了生物医学中透射照明光学计算机断层扫描的测量技术的优势和功能。在这里,我们通过初步的体模实验研究了CDI方法的基本成像特性,例如其高方向性和定量性。结果表明,CDI方法满足在一阶近似下CT重建的要求,并且在估计浓度与实际浓度之间的关系保持令人满意的线性的意义上,可以进行定量测量。

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