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Dual-beam angular compounding for speckle reduction in Optical Coherence Tomography

机译:双光束角复合技术可减少光学相干断层扫描中的斑点

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Optical coherence tomography (OCT), as a low-coherence interferometric imaging technique, inevitably suffers from speckle noise, which can reduce image quality and signal-to-noise (SNR). In this paper, we present a dual-beam angular compounding method to reduce speckle noise and improve SNR of OCT image. Two separated parallel light beams are created on the sample arm using a 1×2 optical fiber coupler and are focused into samples at different angles. The epi-detection scheme creates three different light path combinations of these two light beams above. The three combinations produce three images in single B-scan, which are completely separated in depth. The three images show uncorrelated speckle patterns and therefore can be averaged to create a new image with reduced speckle noise. Compared to those reported angular and spatial compounding methods, our method retains their advantages, and moreover has a faster imaging speed and keep the transverse resolution. This method was evaluated on human fingertips in vivo. The results demonstrated a good improvement in speckle contrast.
机译:光学相干断层扫描(OCT)作为一种低相干干涉成像技术,不可避免地会受到斑点噪声的影响,这会降低图像质量和信噪比(SNR)。在本文中,我们提出了一种双光束角度混合方法,以减少斑点噪声并提高OCT图像的SNR。使用1×2光纤耦合器在样品臂上产生两个分开的平行光束,并以不同角度聚焦到样品中。 Epi检测方案在上方创建了这两个光束的三种不同的光路组合。这三个组合在一次B扫描中产生了三个图像,这些图像在深度上是完全分开的。这三个图像显示出不相关的斑点图案,因此可以取平均以创建具有减少斑点噪声的新图像。与那些报道的角度和空间复合方法相比,我们的方法保留了它们的优点,而且具有更快的成像速度并保持横向分辨率。在人的指尖上对这种方法进行了体内评估。结果证明了斑点对比度的良好改善。

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