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Three-dimensional speckle suppression in optical coherence tomography based on the curvelet transform

机译:基于Curvelet变换的光学相干层析成像中的三维斑点抑制

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摘要

Optical coherence tomography is an emerging non-invasive technology that provides high resolution, cross-sectional tomographic images of internal structures of specimens. OCT images, however, are usually degraded by significant speckle noise. Here we introduce to our knowledge the first 3D approach to attenuating speckle noise in OCT images. Unlike 2D approaches which only consider information in individual images, 3D processing, by analyzing all images in a volume simultaneously, has the advantage of also taking the information between images into account. This, coupled with the curvelet transform’s nearly optimal sparse representation of curved edges that are common in OCT images, provides a simple yet powerful platform for speckle attenuation. We show the approach suppresses a significant amount of speckle noise, while in the mean time preserves and thus reveals many subtle features that could get attenuated in other approaches.
机译:光学相干断层扫描是一种新兴的非侵入性技术,可提供标本内部结构的高分辨率横截面断层图像。但是,OCT图像通常会因明显的斑点噪声而劣化。在这里,我们介绍我们的知识来减弱OCT图像中斑点噪声的第一种3D方法。与仅考虑单个图像中的信息的2D方法不同,通过同时分析一个体积中的所有图像的3D处理具有还考虑了图像之间的信息的优点。结合使用Curvelet变换对OCT图像中常见的弯曲边缘的近乎最佳的稀疏表示,可为散斑衰减提供一个简单而强大的平台。我们展示了该方法可抑制大量斑点噪声,而同时保留并因此揭示了许多其他方法可能会衰减的细微特征。

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