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Calibration-free sinusoidal rectification and uniform retinal irradiance in scanning light ophthalmoscopy

机译:扫描光检眼镜中免校正的正弦波矫正和均匀的视网膜辐照度

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摘要

Sinusoidal rectification (i.e. desinusoiding) is necessary for scanning imaging systems and is typically achieved by calculating a rectification transform from a calibration image such as a regular grid. This approach is susceptible to error due to electronic or mechanical instability that can alter the phase of the imaging window with respect to the calibration transform. Here we show a calibration-free rectification method implemented from live video of a scanning light ophthalmoscope (SLO) with or without adaptive optics (AO). This approach, which capitalizes on positional differences in the images obtained in the forward and backward scan directions, dynamically keeps the imaging window in phase with the motion of the sinusoidal resonant scanner, preventing errors from signal drift over time. A benefit of this approach is that it allows the light power across the field-of-view (FOV) to be modulated inversely to achieve uniform irradiance on the retina, a feature desirable for functional imaging methods and light safety in scanning light ophthalmoscopes.
机译:正弦校正(即反正弦化)对于扫描成像系统是必需的,并且通常通过根据诸如规则网格的校准图像计算校正变换来实现。由于电子或机械不稳定性,该方法容易出错,相对于校准变换,该电子或机械不稳定性会改变成像窗口的相位。在这里,我们展示了一种无标定校正方法,该方法是从带有或不带有自适应光学系统(AO)的扫描光检眼镜(SLO)的实时视频中实现的。这种方法利用了在向前和向后扫描方向上获得的图像的位置差异,可以动态地使成像窗口与正弦共振扫描仪的运动保持同相,从而防止信号随时间漂移而产生误差。这种方法的优点在于,它允许对视场(FOV)的光功率进行反调制,以实现对视网膜的均匀辐照,这是功能成像方法和扫描光检眼镜的光安全性所希望的。

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