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Time efficient Gabor fused Master Slave optical coherence tomography

机译:时间高效的Gabor熔融主从光学相干断层扫描

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In this paper the benefits in terms of operation time that Master/Slave (MS) implementation of optical coherence tomography can bring in comparison to Gabor fused (GF) employing conventional fast Fourier transform based OCT are presented. The Gabor Fusion/Master Slave Optical Coherence Tomography architecture proposed here does not need any data stitching. Instead, a subset of en-face images is produced for each focus position inside the sample to be imaged, using a reduced number of theoretically inferred Master masks. These en-face images are then assembled into a final volume. When the channelled spectra are digitized into 1024 sampling points, and more than 4 focus positions are required to produce the final volume, the Master Slave implementation of the instrument is faster than the conventional fast Fourier transform based procedure.
机译:在本文中,与采用传统的基于快速傅里叶变换的OCT的Gabor融合(GF)相比,提出了光学相干断层扫描的Master / Slave(MS)实现可以带来的操作时间优势。此处提出的Gabor融合/主从光学相干断层扫描体系结构不需要任何数据拼接。取而代之的是,使用数量减少的理论推断的主蒙版,为要成像的样本内的每个焦点位置生成面部图像的子集。然后将这些正面图像组装成最终体积。当将通道光谱数字化为1024个采样点,并且需要4个以上的焦点位置才能产生最终体积时,仪器的“主从”实现比基于常规快速傅立叶变换的过程要快。

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