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Simultaneous SLO/OCT Imaging of the Human Retina in vivo with High Speed Axial Eye Motion Correction

机译:具有高速轴向眼动校正的体内人视网膜的同时SLO / OCT成像

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Transversal scanning (or en-face) optical coherence tomography (TS-OCT) represents an imaging modality that is capable to record high isotropic resolution images of the human retina in vivo. However, axial eye motion still remains a challenging problem of this technique. In this paper we introduce an improved method of our previously published axial eye motion correction technique. To measure accurately the position of the cornea an auxiliary spectral domain partial coherence interferometer (SD-PCI) operating at 1310nm that is integrated into a TS-OCT system is used. The recorded coraeal position is used to drive a rapid scanning optical delay line in the reference arm of the TS-OCT system to correct for axial eye motion. Currently, the correction can be performed with a rate of ~1kHz which is approximately 20 times faster than our previous system and practically eliminates axial eye motion artifacts. The TS-OCT instrument is operated with a line scan rate of 8000 transversal lines per second which enables simultaneous scanning laser ophthalmoscope (SLO) and OCT imaging at a frame rate of 40fps (650x200pixels).
机译:横向扫描(或抗面)光学相干断层扫描(TS-OCT)表示能够记录体内人视网膜的高各向同性分辨率图像的成像模态。然而,轴向眼动仍然是这种技术的具有挑战性的问题。在本文中,我们介绍了先前公布的轴向运动校正技术的改进方法。为了准确测量角膜的位置,使用以1310nm在集成到TS-OCT系统的1310nm下操作的辅助光谱域部分相干干涉仪(SD-PCI)。记录的芯骨位置用于在TS-OCT系统的参考臂中驱动快速扫描光学延迟线,以校正轴向眼动。目前,可以以〜1kHz的速率执行校正,其比我们之前的系统快约20倍,并且实际上消除了轴向眼动伪像。 TS-OCT仪器以每秒8000个横向线的线路扫描速率运行,可以40fps(650x200pixels)的帧速率同时扫描激光眼镜(SLO)和OCT成像。

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