Abstract

We present a new method for subjectively evaluating intraocular lenses (IOLs) without implantation surgery. To illustrate the method, three types of single-piece IOL (equispherical monofocal, rotational symmetric aspheric monofocal, and diffractive bifocal) were assembled into a model eye and evaluated using an ocular adaptive optics system by a single subject. To separate the spherical aberration of the crystalline lens, the subject’s corneal topography and wavefront aberrations were measured and modeled. Three levels of Zernike spherical aberration were generated and superposed on the IOLs and the subject’s eye. The corrected distance visual acuity was measured by psychophysical visual procedure.

© 2012 Optical Society of America

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  1. M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
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    [CrossRef]
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    [CrossRef]
  6. J. Tabernero, A. Benito, E. Alcon, and P. Artal, J. Opt. Soc. Am. A 24, 3274 (2007).
    [CrossRef]
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    [CrossRef]
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    [CrossRef]
  9. P. Artal, S. Manzanera, P. Piers, and H. Weeber, Opt. Express 18, 1637 (2010).
    [CrossRef]
  10. E. Dalimier, C. Dainty, and J. L. Barbur, J. Mod. Opt. 55, 791 (2008).
    [CrossRef]
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    [CrossRef]
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    [CrossRef]

2012

H. Guo, A. Goncharov, and C. Dainty, Ophthal. Physiol. Opt. 32, 117 (2012).
[CrossRef]

M. A. Nanavaty, D. J. Spalton, and K. B. Gala, J. Cataract Refract. Surg. 38, 625 (2012).
[CrossRef]

M. Nowakowski, M. Sheehan, D. Neal, and A. V. Goncharov, Biomed. Opt. Express 3, 240 (2012).
[CrossRef]

2011

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

P. Ernest and R. Potvin, J. Cataract Refract. Surg. 37, 727 (2011).
[CrossRef]

A. Roorda, J. Vision 11, 6 (2011).
[CrossRef]

2010

2009

R. Montes-Mico, T. Ferrer-Blasco, and A. Cervino, J. Cataract Refract. Surg. 35, 172 (2009).
[CrossRef]

D. A. Atchison, H. Guo, W. N. Charman, and S. W. Fisher, Vis. Res. 49, 2393 (2009).
[CrossRef]

2008

E. Dalimier, C. Dainty, and J. L. Barbur, J. Mod. Opt. 55, 791 (2008).
[CrossRef]

2007

2004

A. Guirao, J. Tejedor, and P. Artal, Invest. Ophthalmol. Vis. Sci. 45, 4312 (2004).
[CrossRef]

J. E. Kelly, T. Mihashi, and H. C. Howland, J. Vision 4, 2 (2004).
[CrossRef]

2003

Alcon, E.

Artal, P.

Atchison, D. A.

D. A. Atchison and H. Guo, Optom. Vis. Sci. 87, 890 (2010).
[CrossRef]

D. A. Atchison, H. Guo, W. N. Charman, and S. W. Fisher, Vis. Res. 49, 2393 (2009).
[CrossRef]

Barbur, J. L.

E. Dalimier, C. Dainty, and J. L. Barbur, J. Mod. Opt. 55, 791 (2008).
[CrossRef]

Benito, A.

Cervino, A.

R. Montes-Mico, T. Ferrer-Blasco, and A. Cervino, J. Cataract Refract. Surg. 35, 172 (2009).
[CrossRef]

Charman, W. N.

D. A. Atchison, H. Guo, W. N. Charman, and S. W. Fisher, Vis. Res. 49, 2393 (2009).
[CrossRef]

Dainty, C.

H. Guo, A. Goncharov, and C. Dainty, Ophthal. Physiol. Opt. 32, 117 (2012).
[CrossRef]

E. Dalimier, C. Dainty, and J. L. Barbur, J. Mod. Opt. 55, 791 (2008).
[CrossRef]

Dalimier, E.

E. Dalimier, C. Dainty, and J. L. Barbur, J. Mod. Opt. 55, 791 (2008).
[CrossRef]

Ernest, P.

P. Ernest and R. Potvin, J. Cataract Refract. Surg. 37, 727 (2011).
[CrossRef]

Ferrer-Blasco, T.

R. Montes-Mico, T. Ferrer-Blasco, and A. Cervino, J. Cataract Refract. Surg. 35, 172 (2009).
[CrossRef]

Fisher, S. W.

D. A. Atchison, H. Guo, W. N. Charman, and S. W. Fisher, Vis. Res. 49, 2393 (2009).
[CrossRef]

Gala, K. B.

M. A. Nanavaty, D. J. Spalton, and K. B. Gala, J. Cataract Refract. Surg. 38, 625 (2012).
[CrossRef]

Goncharov, A.

H. Guo, A. Goncharov, and C. Dainty, Ophthal. Physiol. Opt. 32, 117 (2012).
[CrossRef]

Goncharov, A. V.

Guirao, A.

A. Guirao, J. Tejedor, and P. Artal, Invest. Ophthalmol. Vis. Sci. 45, 4312 (2004).
[CrossRef]

Guo, H.

H. Guo, A. Goncharov, and C. Dainty, Ophthal. Physiol. Opt. 32, 117 (2012).
[CrossRef]

D. A. Atchison and H. Guo, Optom. Vis. Sci. 87, 890 (2010).
[CrossRef]

D. A. Atchison, H. Guo, W. N. Charman, and S. W. Fisher, Vis. Res. 49, 2393 (2009).
[CrossRef]

Gwiazda, J.

He, J. C.

Held, R.

Howland, H. C.

J. E. Kelly, T. Mihashi, and H. C. Howland, J. Vision 4, 2 (2004).
[CrossRef]

Kelly, J. E.

J. E. Kelly, T. Mihashi, and H. C. Howland, J. Vision 4, 2 (2004).
[CrossRef]

Kim, M. J.

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

Macrae, S.

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

Manzanera, S.

Mihashi, T.

J. E. Kelly, T. Mihashi, and H. C. Howland, J. Vision 4, 2 (2004).
[CrossRef]

Montes-Mico, R.

R. Montes-Mico, T. Ferrer-Blasco, and A. Cervino, J. Cataract Refract. Surg. 35, 172 (2009).
[CrossRef]

Nanavaty, M. A.

M. A. Nanavaty, D. J. Spalton, and K. B. Gala, J. Cataract Refract. Surg. 38, 625 (2012).
[CrossRef]

Neal, D.

Nowakowski, M.

Piers, P.

Potvin, R.

P. Ernest and R. Potvin, J. Cataract Refract. Surg. 37, 727 (2011).
[CrossRef]

Roorda, A.

A. Roorda, J. Vision 11, 6 (2011).
[CrossRef]

Sheehan, M.

Spalton, D. J.

M. A. Nanavaty, D. J. Spalton, and K. B. Gala, J. Cataract Refract. Surg. 38, 625 (2012).
[CrossRef]

Tabernero, J.

Tchah, H.

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

Tejedor, J.

A. Guirao, J. Tejedor, and P. Artal, Invest. Ophthalmol. Vis. Sci. 45, 4312 (2004).
[CrossRef]

Thorn, F.

Weeber, H.

Yoon, G.

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

Zheleznyak, L.

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

Biomed. Opt. Express

Invest. Ophthalmol. Vis. Sci.

A. Guirao, J. Tejedor, and P. Artal, Invest. Ophthalmol. Vis. Sci. 45, 4312 (2004).
[CrossRef]

J. Cataract Refract. Surg.

M. A. Nanavaty, D. J. Spalton, and K. B. Gala, J. Cataract Refract. Surg. 38, 625 (2012).
[CrossRef]

P. Ernest and R. Potvin, J. Cataract Refract. Surg. 37, 727 (2011).
[CrossRef]

M. J. Kim, L. Zheleznyak, S. Macrae, H. Tchah, and G. Yoon, J. Cataract Refract. Surg. 37, 1305 (2011).
[CrossRef]

R. Montes-Mico, T. Ferrer-Blasco, and A. Cervino, J. Cataract Refract. Surg. 35, 172 (2009).
[CrossRef]

J. Mod. Opt.

E. Dalimier, C. Dainty, and J. L. Barbur, J. Mod. Opt. 55, 791 (2008).
[CrossRef]

J. Opt. Soc. Am. A

J. Vision

J. E. Kelly, T. Mihashi, and H. C. Howland, J. Vision 4, 2 (2004).
[CrossRef]

A. Roorda, J. Vision 11, 6 (2011).
[CrossRef]

Ophthal. Physiol. Opt.

H. Guo, A. Goncharov, and C. Dainty, Ophthal. Physiol. Opt. 32, 117 (2012).
[CrossRef]

Opt. Express

Optom. Vis. Sci.

D. A. Atchison and H. Guo, Optom. Vis. Sci. 87, 890 (2010).
[CrossRef]

Vis. Res.

D. A. Atchison, H. Guo, W. N. Charman, and S. W. Fisher, Vis. Res. 49, 2393 (2009).
[CrossRef]

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Figures (2)

Fig. 1.
Fig. 1.

Ocular AO system with a model eye. The model eye consists of an aperture, artificial corneal L1, wet cell, an IOL, and lens L2 in front of the eye. The pupil of the eye and the IOL locate at double optical focus length of lens L2.

Fig. 2.
Fig. 2.

Visual acuity results of spherical (first bar of each group), aspheric (second bar), and diffractive (third bar) IOLs under three Zernike SAs generated by the AO system.

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