Urban Dorian R, Novak Pavel, Preciado Miguel A, Vettenburg Tom
Optos PLC, Queensferry House, Enterprise Way, Dunfermline KY11 8GR, Scotland, UK.
School of Science and Engineering, University of Dundee, DD1 4HN, Scotland, UK.
Biomed Opt Express. 2024 Oct 28;15(11):6573-6587. doi: 10.1364/BOE.540278. eCollection 2024 Nov 1.
Optical coherence tomography (OCT) is a unique imaging modality capable of axial sectioning with a resolution of only a few microns. Its ability to image with high resolution deep within tissue makes it ideal for material inspection, dentistry, and, in particular, ophthalmology. Widefield retinal imaging has garnered increasing clinical interest for the detection of numerous retinal diseases. However, real-time applications in clinical practice demand the contrast of swept-source OCT at scan speeds that limit their depth range. The curvature of typical samples, such as teeth, corneas, or retinas, thus restricts the field-of-view of fast OCT systems. Novel high-speed swept sources are expected to further improve the scan rate; however, not without exacerbating the already severe trade-off in depth range. Here, we show how, without the need for mechanical repositioning, harmonic images can be rapidly synthesized at any depth. This is achieved by opto-electronic modulation of a single-frequency swept source laser in tandem with tailored numerical dispersion compensation. We demonstrate experimentally how real-time imaging of highly-curved samples is enabled by extending the effective depth-range 8-fold. Even at the scan speed of a 400 kHz swept source, harmonic OCT enables widefield retinal imaging.
光学相干断层扫描(OCT)是一种独特的成像方式,能够进行轴向切片,分辨率仅为几微米。它在组织深处进行高分辨率成像的能力使其非常适合材料检测、牙科,尤其是眼科。宽视野视网膜成像在检测多种视网膜疾病方面引起了越来越多的临床关注。然而,临床实践中的实时应用需要扫频源OCT在扫描速度上具有对比度,这限制了它们的深度范围。典型样本(如牙齿、角膜或视网膜)的曲率因此限制了快速OCT系统的视野。新型高速扫频源有望进一步提高扫描速率;然而,这并非不会加剧在深度范围方面已经很严重的权衡。在此,我们展示了如何在无需机械重新定位的情况下,在任何深度快速合成谐波图像。这是通过对单频扫频源激光进行光电调制并结合定制的数值色散补偿来实现的。我们通过实验证明,将有效深度范围扩展8倍可实现对高曲率样本的实时成像。即使在400 kHz扫频源的扫描速度下,谐波OCT也能实现宽视野视网膜成像。