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Characterising a Holographic Modal Phase Mask for the Detection of Ocular Aberrations

机译:表征全息模式掩模以检测眼睛像差

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The accurate measurement of the double-pass ocular wave front has been shown to have a broad range of applications from LASIK surgery to adaptively corrected retinal imaging. The ocular wave front can be accurately described by a small number of Zernike circle polynomials. The modal wave front sensor was first proposed by Neil et al. and allows the coefficients of the individual Zernike modes to be measured directly. Typically the aberrations measured with the modal sensor are smaller than those seen in the ocular wave front. In this work, we investigated a technique for adapting a modal phase mask for the sensing of the ocular wave front. This involved extending the dynamic range of the sensor by increasing the pinhole size to 2.4mm and optimising the mask bias to 0.75λ. This was found to decrease the RMS error by up to a factor of three for eye-like aberrations with amplitudes up to 0.2μm. For aberrations taken from a sample of real-eye measurements a 20% decrease in the RMS error was observed.
机译:已经显示了双通眼波前面的精确测量,从LASIK手术中具有广泛的应用,以适自相同的视网膜成像。可以通过少量Zernike圆多项式来精确描述眼波前面。 MODAL WAVER前传感器首先由NEIL等人提出。并且允许直接测量各个Zernike模式的系数。通常,用模态传感器测量的像差小于在眼波前面看到的像差。在这项工作中,我们研究了一种用于调整模态相掩模的技术,用于感测眼波前面。这涉及通过将针孔大小增加到2.4mm并优化掩模偏压至0.75λ来延伸传感器的动态范围。发现这将RMS误差通过高达0.2μm的壮大的眼睛像差将RMS误差降低至三个。对于从实眼测量样本取出的像差,观察到RMS误差的20%降低。

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