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Enhancement of intrinsic optical signal recording with split spectrum optical coherence tomography

机译:分离光谱光学相干断层扫描增强本征光信号记录

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摘要

Functional optical coherence tomography (OCT) of stimulus-evoked intrinsic optical signal (IOS) promises to be a new methodology for high-resolution mapping of retinal neural dysfunctions. However, its practical applications for non-invasive examination of retinal function have been hindered by the low signal-to-noise ratio (SNR) and small magnitude of IOSs. Split spectrum amplitude-decorrelation has been demonstrated to improve the image quality of OCT angiography. In this study, we exploited split spectrum strategy to improve the sensitivity of IOS recording. The full OCT spectrum was split into multiple spectral bands and IOSs from each sub-band were calculated separately and then combined to generate a single IOS image sequence. The algorithm was tested on in vivo images of frog retinas. It significantly improved both IOS magnitude and SNR, which are essential for practical applications of functional IOS imaging.
机译:刺激诱发的内在光信号(IOS)的功能性光学相干断层扫描(OCT)有望成为一种高分辨率映射视网膜神经功能障碍的新方法。但是,它的低信噪比(SNR)和小数量的IOS阻碍了其在视网膜功能无创检查中的实际应用。已经证明了裂谱幅度去相关可以改善OCT血管造影的图像质量。在这项研究中,我们利用分裂频谱策略来提高IOS记录的灵敏度。将整个OCT光谱分为多个光谱带,并分别计算每个子带的IOS,然后合并以生成单个IOS图像序列。该算法在青蛙视网膜的体内图像上进行了测试。它显着改善了IOS幅度和SNR,这对于功能性IOS成像的实际应用至关重要。

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