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The system has a maximum imaging speed of 8 frames per second and a limited useful life-span of approximately 200 patient procedures [ 24].
The ray-casting of two volume data sets cost 12.5 ms. Based on the measurement, our system could provide a theoretical maximum imaging speed of 249,000 A-scans per second.
The theoretical maximum processing speed was measured to be 249,000 A-scans per second, which was above our current maximum imaging speed of 70,000 A-scans per second limited by the camera speed.
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The axial (depth) resolution was 3.6 μm in tissue, full-width-at-half-maximum, the transverse resolution was 3.6 μm (full-width-at-half-maximum), and the imaging speed was 47,000 axial scans per second (17.3 microsecond exposure time), achieved by an InGaAs line scan camera (Goodrich-Sensors Unlimited, Inc).
The maximum detectable velocity before phase wrapping, determined by the imaging speed, is ±20 mm/s in tissue.
Using SMASH, imaging speed can be increased up to a maximum acceleration factor equal to the number of coil array elements.
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.
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