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DeepLSR: a deep learning approach for laser speckle reduction

机译:DeepLSR:一种用于减少激光斑点的深度学习方法

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摘要

Speckle artifacts degrade image quality in virtually all modalities that utilize coherent energy, including optical coherence tomography, reflectance confocal microscopy, ultrasound, and widefield imaging with laser illumination. We present an adversarial deep learning framework for laser speckle reduction, called DeepLSR (), that transforms images from a source domain of coherent illumination to a target domain of speckle-free, incoherent illumination. We apply this method to widefield images of objects and tissues illuminated with a multi-wavelength laser, using light emitting diode-illuminated images as ground truth. In images of gastrointestinal tissues, DeepLSR reduces laser speckle noise by 6.4 dB, compared to a 2.9 dB reduction from optimized non-local means processing, a 3.0 dB reduction from BM3D, and a 3.7 dB reduction from an optical speckle reducer utilizing an oscillating diffuser. Further, DeepLSR can be combined with optical speckle reduction to reduce speckle noise by 9.4 dB. This dramatic reduction in speckle noise may enable the use of coherent light sources in applications that require small illumination sources and high-quality imaging, including medical endoscopy.
机译:散斑伪影实际上会在所有利用相干能量的模式中降低图像质量,包括光学相干断层扫描,反射共聚焦显微镜,超声和激光照射的宽视场成像。我们提出了一种用于减少激光散斑的对抗性深度学习框架,称为DeepLSR(),该框架将图像从相干照明的源域转换为无斑点,不相干照明的目标域。我们将这种方法应用于使用多波长激光照射的物体和组织的宽视场图像,并使用发光二极管照射的图像作为地面真相。在胃肠道组织的图像中,DeepLSR将激光散斑噪声降低了6.4 dB,相比之下,优化的非局部均值处理降低了2.9 dB,BM3D降低了3.0 dB,而光学散斑降低器使用了振荡扩散器,降低了3.7 dB 。此外,DeepLSR可以与光学散斑减少功能结合使用,以减少9.4 dB的散斑噪声。斑点噪声的这种显着降低可以在需要小型照明源和高质量成像(包括医学内窥镜检查)的应用中使用相干光源。

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