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Speckle-Modulation for Speckle Reduction in Optical Coherence Tomography

机译:用于光学相干断层扫描中减少斑点的斑点调制

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摘要

Optical coherence tomography (OCT) is a powerful biomedical imaging technology that relies on the coherent detection of backscattered light to image tissue morphology in vivo. As a consequence, OCT is susceptible to coherent noise, known as speckle noise, which imposes significant limitations on its diagnostic capabilities. Here we show Speckle-Modulating OCT (SM-OCT), a method based purely on light manipulation, which can remove speckle noise, including noise originating from sample multiple back-scattering. SM-OCT accomplishes this by creating and averaging an unlimited number of scans with uncorrelated speckle patterns, without compromising spatial resolution. The uncorrelated speckle patterns are created by scrambling the phase of the light with sub-resolution features using a moving ground-glass diffuser in the optical path of the sample arm. This method can be implemented in existing OCTs as a relatively low-cost add-on. SM-OCT speckle statistics follow the expected decrease in speckle contrast as the number of averaged scans increases. Within a scattering phantom, SM-OCT provides a 2.5-fold increase in effective resolution compared to conventional OCT. Using SM-OCT, we reveal small structures in the tissues of living animals, such as the inner stromal structure of a live mouse cornea, the fine structures inside the mouse pinna, and sweat ducts and Meissner's corpuscle in the human fingertip skin - features that are otherwise obscured by speckle noise when using conventional OCT or OCT with current state of the art speckle reduction methods. Our results indicate that SM-OCT has the potential to improve the current diagnostic and intra-operative capabilities of OCT.
机译:光学相干断层扫描(OCT)是一项功能强大的生物医学成像技术,它依赖于对背向散射光的相干检测,以在体内对组织图像进行成像。结果,OCT易受相干噪声(称为斑点噪声)的影响,这对其诊断能力造成了很大的限制。在这里,我们展示了斑点调制OCT(SM-OCT),这是一种纯粹基于光处理的方法,可以消除斑点噪声,包括源自样本多次反向散射的噪声。 SM-OCT通过创建并平均不相关斑点图案的无限制扫描次数来实现此目的,而不会影响空间分辨率。不相关的斑点图案是通过在样品臂的光路中使用移动的磨砂玻璃漫射器将具有亚分辨率特征的光的相位加扰而创建的。这种方法可以在现有的OCT中作为相对低成本的附件来实现。随着平均扫描次数的增加,SM-OCT散斑统计数据遵循散斑对比度的预期下降。在散射体模中,与传统的OCT相比,SM-OCT的有效分辨率提高了2.5倍。使用SM-OCT,我们发现了活体动物组织中的小结构,例如活的小鼠角膜的内部基质结构,小鼠耳廓内部的精细结构以及人的指尖皮肤中的汗管和Meissner的小体-具有当使用传统的OCT或OCT和最新的现有斑点消除方法时,斑点噪声会掩盖这些信号。我们的结果表明,SM-OCT具有改善当前OCT诊断和术中功能的潜力。

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    Department of Structural Biology Stanford University Stanford CA 94305 Department of Electrical Engineering Stanford University Stanford CA 94305 Molecular Imaging Program at Stanford Stanford CA 94305 The Bio-X Program Stanford CA 94305;

    Department of Structural Biology Stanford University Stanford CA 94305;

    Department of Structural Biology Stanford University Stanford CA 94305 Molecular Imaging Program at Stanford Stanford CA 94305 The Bio-X Program Stanford CA 94305 Biophysics Program at Stanford Stanford CA 94305;

    Department of Structural Biology Stanford University Stanford CA 94305 Molecular Imaging Program at Stanford Stanford CA 94305 The Bio-X Program Stanford CA 94305;

    Byers Eye Institute Department of Ophthalmology Stanford University School of Medicine Palo Alto CA 94303;

    The Bio-X Program Stanford CA 94305 Biophysics Program at Stanford Stanford CA 94305 Departments of Physics and Molecular Cellular Physiology Stanford University Stanford CA 94305;

    Department of Structural Biology Stanford University Stanford CA 94305 Department of Electrical Engineering Stanford University Stanford CA 94305 Molecular Imaging Program at Stanford Stanford CA 94305 The Bio-X Program Stanford CA 94305 Biophysics Program at Stanford Stanford CA 94305 The Chan Zuckerberg Biohub San Francisco CA 94158;

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  • 关键词

    optical coherence tomography (OCT); speckle;

    机译:光学相干断层扫描(OCT);斑点;

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