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Influence of coherence length signal-to-noise ratio log transform and low-pass filtering on layer thickness assessment with OCT in the retina

机译:相干长度信噪比对数变换和低通滤波对视网膜OCT层厚度评估的影响

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摘要

Optical coherence tomography (OCT) images of the retina are inevitably affected by the finite width of the coherence function and noise. To make low-reflective layers visible, the raw OCT signal is log transformed; to reduce the effect of noise the images can be low-pass filtered. We determined the effects of these operations on layer thickness assessment, as a function of signal-to-noise ratio (SNR), by performing measurements in a phantom eye and modeling. The log transform appeared to be the key factor in a SNR-dependent overestimation of peak widths and a less predictive bias in the widths of low-reflective layers.
机译:视网膜的光学相干断层扫描(OCT)图像不可避免地受到相干函数和噪声的有限宽度的影响。为了使低反射层可见,原始OCT信号经过对数转换;为了减少噪声的影响,可以对图像进行低通滤波。通过在幻影眼中进行测量和建模,我们确定了这些操作对层厚度评估的影响,作为信噪比(SNR)的函数。对数变换似乎是依赖SNR的峰宽过高估计和低反射层宽度的预测偏差较小的关键因素。

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