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Full range line-field parallel swept source imaging utilizing digital refocusing

机译:利用数字重聚焦的全范围线场并行扫频源成像

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摘要

We present geometric optics-based refocusing applied to a novel off-axis line-field parallel swept source imaging (LPSI) system. LPSI is an imaging modality based on line-field swept source optical coherence tomography, which permits 3-D imaging at acquisition speeds of up to 1 MHz. The digital refocusing algorithm applies a defocus-correcting phase term to the Fourier representation of complex-valued interferometric image data, which is based on the geometrical optics information of the LPSI system. We introduce the off-axis LPSI system configuration, the digital refocusing algorithm and demonstrate the effectiveness of our method for refocusing volumetric images of technical and biological samples. An increase of effective in-focus depth range from 255 mu m to 4.7 mm is achieved. The recovery of the full in-focus depth range might be especially valuable for future high-speed and high-resolution diagnostic applications of LPSI in ophthalmology.
机译:我们目前将基于几何光学的重新聚焦应用于新型离轴线场并行扫频源成像(LPSI)系统。 LPSI是一种基于线场扫频源光学相干断层扫描的成像方式,可以以高达1 MHz的采集速度进行3D成像。数字重新聚焦算法是基于LPSI系统的几何光学信息,将散焦校正相位项应用于复值干涉图像数据的傅立叶表示。我们介绍了离轴LPSI系统配置,数字重新聚焦算法,并演示了我们的方法对技术和生物样品的体积图像重新聚焦的有效性。有效对焦深度范围从255微米增加到4.7毫米。整个聚焦深度范围的恢复对于LPSI在眼科领域的未来高速和高分辨率诊断应用而言可能特别有价值。

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