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The maximal imaging speed of the system was 92,000 A scans per second, which is nearly doubled compared to the one we applied previously [ 25].
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In the case of high-speed imaging, this resonance impairs the imaging speed and quality.
Such imaging speed significantly reduces motion artifacts.
The imaging speed is critical for in vivo ophthalmology applications.
The imaging speed was 1 frame per second.
For in vivo retinal imaging, the imaging speed is an important parameter because the faster imaging speed could minimize the motion artifacts during the in vivo experiments.
In fact, for lasers with variable tuning speeds, no adjustment of the delay line is necessary when varying imaging speed.
However, this downsampling step reduces effective imaging speed by the chosen downsampling factor, whereas the full imaging speed is always maintained in JA-OCT.
The imaging speed needed to be further reduced when imaging biological tissues due to the low level of detected intensity.
SD-OCT offers excellent resolution, but has limited imaging speed and imaging range due to spectrometer and camera performance limitations.
With this imaging speed, it is sometimes difficult for TDOCT to achieve 3D scanning for in vivo imaging applications.
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