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自适应光学超高分辨率光学相干断层扫描

Adaptive-optics ultrahigh-resolution optical coherence tomography.

作者信息

Hermann B, Fernández E J, Unterhuber A, Sattmann H, Fercher A F, Drexler W, Prieto P M, Artal P

机构信息

Department of Medical Physics, Christian Doppler Laboratory, Medical University of Vienna, Austria.

出版信息

Opt Lett. 2004 Sep 15;29(18):2142-4. doi: 10.1364/ol.29.002142.

Abstract

Merging of ultrahigh-resolution optical coherence tomography (UHR OCT) and adaptive optics (AO), resulting in high axial (3 microm) and improved transverse resolution (5-10 microm) is demonstrated for the first time to our knowledge in in vivo retinal imaging. A compact (300 mm x 300 mm) closed-loop AO system, based on a real-time Hartmann-Shack wave-front sensor operating at 30 Hz and a 37-actuator membrane deformable mirror, is interfaced to an UHR OCT system, based on a commercial OCT instrument, employing a compact Ti:sapphire laser with 130-nm bandwidth. Closed-loop correction of both ocular and system aberrations results in a residual uncorrected wave-front rms of 0.1 microm for a 3.68-mm pupil diameter. When this level of correction is achieved, OCT images are obtained under a static mirror configuration. By use of AO, an improvement of the transverse resolution of two to three times, compared with UHR OCT systems used so far, is obtained. A significant signal-to-noise ratio improvement of up to 9 dB in corrected compared with uncorrected OCT tomograms is also achieved.

摘要

据我们所知,首次在体内视网膜成像中展示了超高分辨率光学相干断层扫描(UHR OCT)与自适应光学(AO)的融合,从而实现了高轴向分辨率(3微米)和更高的横向分辨率(5 - 10微米)。一个紧凑的(300毫米×300毫米)闭环AO系统,基于一个以30赫兹运行的实时哈特曼 - 夏克波前传感器和一个37个驱动器的膜片式可变形镜,与一个基于商用OCT仪器的UHR OCT系统相连接,该商用OCT仪器采用了带宽为130纳米的紧凑型钛宝石激光器。对眼睛和系统像差的闭环校正,对于3.68毫米的瞳孔直径,可使残余未校正波前均方根达到0.1微米。当达到这种校正水平时,在静态镜配置下获取OCT图像。通过使用AO,与迄今为止使用的UHR OCT系统相比,横向分辨率提高了两到三倍。与未校正的OCT断层扫描相比,校正后的图像信噪比也显著提高,最高可达9分贝。

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