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使用实时正面光谱域光学相干断层扫描对眼底进行成像。

Imaging the eye fundus with real-time en-face spectral domain optical coherence tomography.

作者信息

Bradu Adrian, Podoleanu Adrian Gh

机构信息

Applied Optics Group, School of Physical Sciences, University of Kent, Canterbury CT2 7NH, UK.

出版信息

Biomed Opt Express. 2014 Mar 19;5(4):1233-49. doi: 10.1364/BOE.5.001233. eCollection 2014 Apr 1.

Abstract

Real-time display of processed en-face spectral domain optical coherence tomography (SD-OCT) images is important for diagnosis. However, due to many steps of data processing requirements, such as Fast Fourier transformation (FFT), data re-sampling, spectral shaping, apodization, zero padding, followed by software cut of the 3D volume acquired to produce an en-face slice, conventional high-speed SD-OCT cannot render an en-face OCT image in real time. Recently we demonstrated a Master/Slave (MS)-OCT method that is highly parallelizable, as it provides reflectivity values of points at depth within an A-scan in parallel. This allows direct production of en-face images. In addition, the MS-OCT method does not require data linearization, which further simplifies the processing. The computation in our previous paper was however time consuming. In this paper we present an optimized algorithm that can be used to provide en-face MS-OCT images much quicker. Using such an algorithm we demonstrate around 10 times faster production of sets of en-face OCT images than previously obtained as well as simultaneous real-time display of up to 4 en-face OCT images of 200 × 200 pixels(2) from the fovea and the optic nerve of a volunteer. We also demonstrate 3D and B-scan OCT images obtained from sets of MS-OCT C-scans, i.e. with no FFT and no intermediate step of generation of A-scans.

摘要

处理后的表面谱域光学相干断层扫描(SD - OCT)图像的实时显示对诊断至关重要。然而,由于数据处理需要许多步骤,如快速傅里叶变换(FFT)、数据重采样、光谱整形、变迹、零填充,随后通过软件裁剪采集的三维体数据以生成表面切片,传统的高速SD - OCT无法实时呈现表面OCT图像。最近,我们展示了一种主从(MS) - OCT方法,该方法具有高度可并行性,因为它能并行提供A扫描中深度点的反射率值。这允许直接生成表面图像。此外,MS - OCT方法不需要数据线性化,这进一步简化了处理过程。然而,我们之前论文中的计算耗时较长。在本文中,我们提出了一种优化算法,可用于更快地提供表面MS - OCT图像。使用这种算法,我们展示了生成表面OCT图像集的速度比之前快约10倍,并且能够同时实时显示来自一名志愿者中央凹和视神经的多达4幅200×200像素的表面OCT图像(2)。我们还展示了从MS - OCT C扫描集中获得的三维和B扫描OCT图像,即无需FFT且无需生成A扫描的中间步骤。

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