Lebed Evgeniy, Mackenzie Paul J, Sarunic Marinko V, Beg Mirza Faisal
School of Engineering Science, Simon Fraser University, Canada.
Opt Express. 2010 Sep 27;18(20):21003-12. doi: 10.1364/OE.18.021003.
Acquiring three dimensional image volumes with techniques such as Optical Coherence Tomography (OCT) relies on reconstructing the tissue layers based on reflection of light from tissue interfaces. One B-mode scan in an image is acquired by scanning and concatenating several A-mode scans, and several contiguous slices are acquired to assemble a full 3D image volume. In this work, we demonstrate how Compressive Sampling (CS) can be used to accurately reconstruct 3D OCT images with minimal quality degradation from a subset of the original image. The full 3D image is reconstructed from sparsely sampled data by exploiting the sparsity of the image in a carefully chosen transform domain. We use several sub-sampling schemes, recover the full 3D image using CS, and show that there is negligible effect on clinically relevant morphometric measurements of the optic nerve head in the recovered image. The potential outcome of this work is a significant reduction in OCT image acquisition time, with possible extensions to speeding up acquisition in other imaging modalities such as ultrasound and MRI.
使用光学相干断层扫描(OCT)等技术获取三维图像体积依赖于基于组织界面的光反射来重建组织层。图像中的一次B模式扫描是通过扫描并拼接多个A模式扫描来获取的,并且获取几个相邻切片以组装完整的三维图像体积。在这项工作中,我们展示了如何使用压缩采样(CS)从原始图像的一个子集中以最小的质量下降准确重建三维OCT图像。通过在精心选择的变换域中利用图像的稀疏性,从稀疏采样的数据中重建完整的三维图像。我们使用几种子采样方案,使用CS恢复完整的三维图像,并表明在恢复的图像中对视神经头的临床相关形态测量的影响可以忽略不计。这项工作的潜在成果是显著减少OCT图像采集时间,并可能扩展到加速其他成像模态(如超声和MRI)的采集。