Bradu Adrian, Kapinchev Konstantin, Barnes Frederick, Podoleanu Adrian
Applied Optics Group, School of Physical Sciences, University of Kent, CT2 7NH, Canterbury, UK.
School of Computing, University of Kent, CT2 7NF, Canterbury, UK.
Biomed Opt Express. 2015 Aug 27;6(9):3655-69. doi: 10.1364/BOE.6.003655. eCollection 2015 Sep 1.
Master Slave optical coherence tomography (MS-OCT) is an OCT method that does not require resampling of data and can be used to deliver en-face images from several depths simultaneously. As the MS-OCT method requires important computational resources, the number of multiple depth en-face images that can be produced in real-time is limited. Here, we demonstrate progress in taking advantage of the parallel processing feature of the MS-OCT technology. Harnessing the capabilities of graphics processing units (GPU)s, information from 384 depth positions is acquired in one raster with real time display of up to 40 en-face OCT images. These exhibit comparable resolution and sensitivity to the images produced using the conventional Fourier domain based method. The GPU facilitates versatile real time selection of parameters, such as the depth positions of the 40 images out of the set of 384 depth locations, as well as their axial resolution. In each updated displayed frame, in parallel with the 40 en-face OCT images, a scanning laser ophthalmoscopy (SLO) lookalike image is presented together with two B-scan OCT images oriented along rectangular directions. The thickness of the SLO lookalike image is dynamically determined by the choice of number of en-face OCT images displayed in the frame and the choice of differential axial distance between them.
主从式光学相干断层扫描(MS-OCT)是一种无需对数据进行重采样的光学相干断层扫描方法,可用于同时提供多个深度的正面图像。由于MS-OCT方法需要大量计算资源,因此实时生成的多个深度正面图像数量有限。在此,我们展示了在利用MS-OCT技术的并行处理特性方面取得的进展。利用图形处理单元(GPU)的功能,在一个光栅中获取来自384个深度位置的信息,并实时显示多达40幅正面OCT图像。这些图像的分辨率和灵敏度与使用传统傅里叶域方法生成的图像相当。GPU有助于灵活实时选择参数,例如从384个深度位置集合中选择40幅图像的深度位置及其轴向分辨率。在每个更新的显示帧中,与40幅正面OCT图像并行,会呈现一幅类似扫描激光检眼镜(SLO)的图像以及两幅沿矩形方向的B扫描OCT图像。类似SLO的图像厚度由帧中显示的正面OCT图像数量选择及其之间的轴向距离差选择动态确定。