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基于图形处理单元的傅里叶域光学相干断层成像系统的实时显示。

Real-time display on Fourier domain optical coherence tomography system using a graphics processing unit.

出版信息

J Biomed Opt. 2009 Nov-Dec;14(6):060506. doi: 10.1117/1.3275463.

Abstract

Fourier domain optical coherence tomography (FD-OCT) requires resampling of spectrally resolved depth information from wavelength to wave number, and the subsequent application of the inverse Fourier transform. The display rates of OCT images are much slower than the image acquisition rates due to processing speed limitations on most computers. We demonstrate a real-time display of processed OCT images using a linear-in-wave-number (linear-k) spectrometer and a graphics processing unit (GPU). We use the linear-k spectrometer with the combination of a diffractive grating with 1200 lines/mm and a F2 equilateral prism in the 840-nm spectral region to avoid calculating the resampling process. The calculations of the fast Fourier transform (FFT) are accelerated by the GPU with many stream processors, which realizes highly parallel processing. A display rate of 27.9 frames/sec for processed images (2048 FFT size x 1000 lateral A-scans) is achieved in our OCT system using a line scan CCD camera operated at 27.9 kHz.

摘要

傅里叶域光学相干断层扫描(FD-OCT)需要对光谱分辨率的深度信息从波长重采样到波数,并随后应用傅里叶逆变换。由于大多数计算机的处理速度限制,OCT 图像的显示速度远低于图像采集速度。我们使用线数(线性-k)光谱仪和图形处理单元(GPU)来实时显示处理后的 OCT 图像。我们使用具有 1200 线/mm 衍射光栅和 840nm 光谱区域的 F2 等边棱镜的组合的线性-k 光谱仪来避免计算重采样过程。快速傅里叶变换(FFT)的计算由具有许多流处理器的 GPU 加速,这实现了高度并行处理。我们的 OCT 系统使用线扫描 CCD 相机以 27.9kHz 运行,实现了 27.9 帧/秒的处理后图像显示速度(2048 个 FFT 大小 x 1000 个横向 A 扫描)。

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