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Real-time inverse scattering for optical coherence tomography

机译:光学相干层析成像的实时逆散射

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We have developed and implemented a system which can acquire, process, and display the solution of the inverse scattering problem for optical coherence tomography (OCT) in real-time at frame rates of 2.25 fps for 512 X 1024 images. Frames which previously required 60 s to process, now take under 0.5 s, an improvement in processing speed by a factor of over 120 times. An efficient routine was designed which requires two interpolations of the columns, one one-dimensional real-to-complex fast Fourier transform (FFT) of the columns, and two two-dimensional FFTs. The limits to speed now rely on the parallelizability of the processing hardware. Our system provides quantitatively meaningful structural information from previously indistinguishable scattering intensities and provides proof of feasibility for future real-time systems.
机译:我们已经开发并实现了一个系统,该系统可以以2.25 fps的帧速率针对512 X 1024图像实时获取,处理和显示光学相干断层扫描(OCT)的逆散射问题的解决方案。以前需要60 s进行处理的框架,现在只需0.5 s,处理速度提高了120倍以上。设计了一种有效的例程,该例程需要对列进行两次插值,对列进行一维的实数到复杂的快速傅立叶变换(FFT)和两个二维FFT。现在,速度限制取决于处理硬件的可并行性。我们的系统从以前无法区分的散射强度中提供了定量上有意义的结构信息,并为未来的实时系统提供了可行性证明。

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