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Aperture phase modulation with adaptive optics: a novel approach for speckle reduction and structure extraction in optical coherence tomography

机译:自适应光学技术的孔径相位调制:一种减少光学相干断层扫描中斑点和结构提取的新方法

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摘要

Speckle is an inevitable consequence of the use of coherent light in imaging and acts as noise that corrupts image formation in most applications. Optical coherence tomographic imaging, as a technique employing coherence time gating, suffers from speckle. We present here a novel method of suppressing speckle noise intrinsically compatible with adaptive optics (AO) for confocal coherent imaging: modulation of the phase in the system pupil aperture with a segmented deformable mirror (DM) to introduce minor perturbations in the point spread function. This approach creates uncorrelated speckle patterns in a series of images, enabling averaging to suppress speckle noise while maintaining structural detail. A method is presented that efficiently determines the optimal range of modulation of DM segments relative to their AO-optimized position so that speckle noise is reduced while image resolution and signal strength are preserved. The method is active and independent of sample properties. Its effectiveness and efficiency are quantified and demonstrated by both ex vivo non-biological and in vivo biological applications.
机译:散斑是在成像中使用相干光的必然结果,并在大多数应用中充当破坏图像形成的噪声。作为使用相干时间门控的技术,光学相干断层扫描成像遭受斑点的困扰。我们在这里提出一种抑制散斑噪声的新方法,该噪声本质上与共焦相干成像的自适应光学(AO)兼容:用分段可变形镜(DM)调制系统光瞳孔径中的相位,从而在点扩散函数中引入较小的扰动。这种方法会在一系列图像中创建不相关的斑点图案,从而在保持结构细节的同时进行平均以抑制斑点噪声。提出了一种方法,该方法可以有效地确定DM段相对于其AO优化位置的最佳调制范围,从而减少斑点噪声,同时保留图像分辨率和信号强度。该方法是有效的,并且与样品性质无关。其有效性和效率通过离体非生物和体内生物应用进行了定量和证明。

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