Scan-pattern and signal processing for microvasculature visualization with complex SD-OCT: tissue-motion artifacts robustness and decorrelation time-blood vessel …

LA Matveev, VY Zaitsev, GV Gelikonov… - … Fall Meeting 2014 …, 2015 - spiedigitallibrary.org
Saratov Fall Meeting 2014: Optical Technologies in Biophysics and …, 2015spiedigitallibrary.org
We propose a modification of OCT scanning pattern and corresponding signal processing
for 3D visualizing blood microcirculation from complex-signal B-scans. We describe the
scanning pattern modifications that increase the methods' robustness to bulk tissue motion
artifacts, with speed up to several cm/s. Based on these modifications, OCT-based
angiography becomes more realistic under practical measurement conditions. For these
scan patterns, we apply novel signal processing to separate the blood vessels with different …
We propose a modification of OCT scanning pattern and corresponding signal processing for 3D visualizing blood microcirculation from complex-signal B-scans. We describe the scanning pattern modifications that increase the methods’ robustness to bulk tissue motion artifacts, with speed up to several cm/s. Based on these modifications, OCT-based angiography becomes more realistic under practical measurement conditions. For these scan patterns, we apply novel signal processing to separate the blood vessels with different decorrelation times, by varying of effective temporal diversity of processed signals.
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