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Parametric image reconstruction using the discrete cosine transform for optical tomography

机译:使用离散余弦变换进行光学层析成像的参数图像重建

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摘要

It is well known that the inverse problem in optical tomography is highly ill-posed. The image reconstruction process is often unstable and nonunique, because the number of the boundary measurements data is far fewer than the number of the unknown parameters to be reconstructed. To overcome this problem, one can either increase the number of measurement data (e.g., multispectral or multifrequency methods), or reduce the number of unknowns (e.g., using prior structural information from other imaging modalities). We introduce a novel approach for reducing the unknown parameters in the reconstruction process. The discrete cosine transform (DCT), which has long been used in image compression, is here employed to parameterize the reconstructed image. In general, only a few DCT coefficients are needed to describe the main features in an optical tomographic image. Thus, the number of unknowns in the image reconstruction process can be drastically reduced. We show numerical and experimental examples that illustrate the performance of the new algorithm as compared to a standard model-based iterative image reconstructions scheme. We especially focus on the influence of initial guesses and noise levels on the reconstruction results.
机译:众所周知,光学层析成像的反问题是非常不适的。图像重建过程通常是不稳定且不唯一的,因为边界测量数据的数量远远少于要重建的未知参数的数量。为了克服这一问题,可以增加测量数据的数量(例如,多光谱或多频方法),或减少未知数的数量(例如,使用来自其他成像模态的先前结构信息)。我们介绍了一种减少重构过程中未知参数的新颖方法。长期以来一直在图像压缩中使用的离散余弦变换(DCT)在这里用于参数化重建图像。通常,仅需要几个DCT系数即可描述光学断层图像的主要特征。因此,可以大大减少图像重建过程中的未知数。我们显示了数值和实验示例,这些示例说明了与基于标准模型的迭代图像重建方案相比,新算法的性能。我们特别关注初始猜测和噪声水平对重建结果的影响。

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