• Optics and Precision Engineering
  • Vol. 18, Issue 5, 1060 (2010)
CHENG Shao-yuan1,2,*, CAO Zhao-liang1, HU Li-fa1, MU Quan-quan1..., LI Peng-fei1,2 and XUAN Li1|Show fewer author(s)
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  • 2[in Chinese]
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    DOI: Cite this Article
    CHENG Shao-yuan, CAO Zhao-liang, HU Li-fa, MU Quan-quan, LI Peng-fei, XUAN Li. Measurement of wavefront aberrations of human eyes with Shack-Hartmann wavefront sensor[J]. Optics and Precision Engineering, 2010, 18(5): 1060 Copy Citation Text show less
    References

    [1] WANG Y, WANG Z Q, GUO H Q, et al...Impact of higher-Order wavefront aberrations of human eyes on vision performance[J].Acta Optica Sinca,2005,25(11):1519-1525.(in Chinese)

    [2] QUAN W, SONG G C, WANG Z Q, et al..Aberrations of the human eye as in the horizontal visual field[J].Acta Photonica Sinica,2007,36(6 ):1102-1105.(in Chinese)

    [3] LIANG J Z, WILLIAMS D R,MILLER D T.Supernormal vision and high-resolution retinal imaging through adaptive optics[J].J.Opt.Soc.Am.A, 1997,14(11): 2884-2892.

    [4] XUE L X, RAO X J, WANG C, et al..Higher-order aberrations correction and vision analysis system for human eye[J].Acta Optica Sinica, 2007,27(5):893-897.(in Chinese)

    [5] YE H,LIAO W H,SHEN J X.Wave-front guided ablation on cornea[J].Opt.Precision Eng.,2004,12(1):31-36.(in Chinese)

    [6] ZHOU C L,YU L,LU P H, et al..Effect of asphericity parameter on Seidal aberration and ablation depth in laser refractive surgery[J].Opt.Precision Eng.,2007,15(2):167-172.(in Chinese)

    [7] JIANG B G,CAO Z L,MU Q Q,et al..Liquid crystal based retina adaptive optical imaging system with laser source[J].Opt.Precision Eng.,2008,16(10):1805-1809.(in Chinese)

    [8] WEBB R H, PENNEY C M, THOMPSON K P.Measurement of ocular local wave-front distortion with a spatially resolved refractometer[J].Appl.Opt.1992; 31:3678-3686.

    [9] PALLIKARIS I G, PANAGOPOULOU S I, SIGANOS C S, et al..Objective measurement of wavefront aberrations with and without Accommodation[J].J.Refract.Surg.2001,17: S602-S607.

    [10] LIANG J, GRIMM B, GOELZ S,et al..Objective measurement of wave aberrations of the human eye with the use of a hartmann-shack wave-front sensor[J].J.Opt.Soc.Am.A.1994,11:1949-1957.

    [11] YU X, RAO X J, XUE L X, et al..Dynamic aberration measuring instrument inducing human eye accommodation[J].Acta Optica Sinica,2007,27(7):1198-1204.(in chinese)

    [12] QUAN W, LING N, WANG Z Q , et al..Property study for hartmann sensor used in measuring wave aberration of human eye[J].Opto-Electronic Engineering,2003,30(3):1-5.(in chinese)

    [13] LING N, RAO X J,YANG ZH P, et al..Wave front sensor for measurement of vivid human eye[C].The 3rd International Workshop on Adaptive Optics for Industry and Medicine, 2001,85-90.

    [14] LI H Q, SONG H L, RAO C H, et al..Extrapolation method to extend dynamic range of Shack-Hartmann wave-front sensor[J].Opt.Precision Eng., 2008,16(7):1203-1207.(in Chinese)

    [15] American National Standards Institute, Safe Use of Lasers[P].ANSI Z136.1-2000, ANSI, 2000, New York.

    [16] VAN N D, TIEMEIJER L F.Spectral reflectance of the human eye[J].Vision Res,1986,26: 313-320.

    [17] CHENG S Y, CAO Z L , HU L F, et al..Optimizing design of LC adaptive optics system for human retinal imaging[J].Acta Photonica Sinica, in Presss.(in Chinese)

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    CHENG Shao-yuan, CAO Zhao-liang, HU Li-fa, MU Quan-quan, LI Peng-fei, XUAN Li. Measurement of wavefront aberrations of human eyes with Shack-Hartmann wavefront sensor[J]. Optics and Precision Engineering, 2010, 18(5): 1060
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