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Retinal imaging system with adaptive optics enhanced with pupil tracking

机译:具有瞳孔跟踪增强的自适应光学技术的视网膜成像系统

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A compact retinal camera with adaptive optics which was designed for clinical practice was used to test a new adaptive optics control algorithm to correct for the angular ray deviations of a model eye. The new control algorithm was based on pupil movements rather than the measurement of the slopes of the wavefront with an optoelectronic sensor. The method for the control algorithm was based on the hypothesis that majority of the changes of the aberrations of the eye are due to head and eye movements and it is possible to correct for the aberrations of the eye by shifting the on axis correction according to the new position of the pupil. Since the fixational eye movements are very small, the eye movements are assumed to be translational rather than rotational. Using the new control algorithm it was possible to simulate the aberrations of the moving model eye based on pupil tracking. The RMS of the residual wavefront error of the simulation had a magnitude similar to the RMS of the residual wavefront error of the adaptive optics correction based on optoelectronic sensor for angular ray deviations. If our hypothesis is true and other factors such as the tear film or the crystalline lens fluctuations do not cause changes in the aberrations of the eye as much as motion does, the method is expected to work in vivo as it did for a model eye which had no intrinsic factors that cause aberration changes.
机译:设计用于临床实践的具有自适应光学元件的紧凑型视网膜相机用于测试新的自适应光学控制算法,以校正模型眼睛的角光线偏差。新的控制算法基于瞳孔运动,而不是基于光电传感器的波前斜率测量。该控制算法的方法基于以下假设:眼睛像差的大部分变化是由于头部和眼睛的运动引起的,并且可以通过根据轴偏移校正轴上校正来校正眼睛的像差。学生的新职位。由于注视眼的移动很小,因此假设眼动是平移的而不是旋转的。使用新的控制算法,可以基于瞳孔跟踪来模拟运动模型眼睛的像差。模拟的残余波前误差的均方根的大小与基于光电传感器的角度射线偏差的自适应光学校正的残余波前误差的均方根的大小相似。如果我们的假设是正确的,并且诸如泪膜或晶状体波动之类的其他因素不会像运动那样引起眼睛像差的变化,那么该方法有望在体内发挥作用,就像模型眼睛一样。没有导致像差变化的内在因素。

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