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Ultra-Fast Displaying Spectral Domain Optical Doppler Tomography System Using a Graphics Processing Unit

机译:使用图形处理单元的超快显示光谱域光学多普勒层析成像系统

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摘要

We demonstrate an ultrafast displaying Spectral Domain Optical Doppler Tomography system using Graphics Processing Unit (GPU) computing. The calculation of FFT and the Doppler frequency shift is accelerated by the GPU. Our system can display processed OCT and ODT images simultaneously in real time at 120 fps for 1,024 pixels × 512 lateral A-scans. The computing time for the Doppler information was dependent on the size of the moving average window, but with a window size of 32 pixels the ODT computation time is only 8.3 ms, which is comparable to the data acquisition time. Also the phase noise decreases significantly with the window size. Since the performance of a real-time display for OCT/ODT is very important for clinical applications that need immediate diagnosis for screening or biopsy. Intraoperative surgery can take much benefit from the real-time display flow rate information from the technology. Moreover, the GPU is an attractive tool for clinical and commercial systems for functional OCT features as well.
机译:我们演示了使用图形处理单元(GPU)计算的超快显示光谱域光学多普勒层析成像系统。 GPU加快了FFT和多普勒频移的计算。我们的系统可以以120 fps的速度实时显示经过处理的OCT和ODT图像,共进行1,024像素×512次横向A扫描。多普勒信息的计算时间取决于移动平均窗口的大小,但是窗口大小为32像素时,ODT计算时间仅为8.3 ms,与数据采集时间相当。而且,相位噪声随着窗口尺寸而显着降低。由于OCT / ODT实时显示的性能对于需要立即诊断筛查或活检的临床应用非常重要。术中手术可从该技术的实时显示流速信息中受益匪浅。此外,GPU还是用于功能性OCT功能的临床和商业系统的有吸引力的工具。

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