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Adaptive optics assisted Fourier domain OCT with balanced detection

机译:自适应光学辅助傅立叶域OCT和平衡检测

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摘要

Two factors are of importance to optical coherence tomography (OCT), resolution and sensitivity. Adaptive optics improves the resolution of a system by correcting for aberrations causing distortions in the wave-front. Balanced detection has been used in time domain OCT systems by removing excess photon noise, however it has not been used in Fourier domain systems, as the cameras used in the spectrometers saturated before excess photon noise becomes a problem. Advances in camera technology mean that this is no longer the case and balanced detection can now be used to improve the signal to noise ratio in a Fourier domain (FD) OCT system. An FD-OCT system, enhanced with adaptive optics, is presented and is used to show the improvement that balanced detection can provide. The signal to noise ratios of single camera detection and balanced detection are assessed and in-vivo retinal images are acquired to demonstrate better image quality when using balance detection.
机译:光学相干断层扫描(OCT)有两个重要的因素,即分辨率和灵敏度。自适应光学器件通过校正引起波前畸变的像差来提高系统的分辨率。平衡检测已通过去除多余的光子噪声而用于时域OCT系统中,但由于在光谱仪中使用的摄像机在出现多余的光子噪声成为问题之前就已经饱和,因此并未在傅立叶域系统中使用过。摄像头技术的进步意味着情况不再如此,现在可以使用平衡检测来改善傅里叶域(FD)OCT系统中的信噪比。提出了采用自适应光学技术增强的FD-OCT系统,该系统用于显示平衡检测可以提供的改进。评估单相机检测和平衡检测的信噪比,并获取体内视网膜图像,以显示使用平衡检测时更好的图像质量。

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