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Published in: BMC Ophthalmology 1/2020

Open Access 01-12-2020 | Research article

Eyelid squinting improves near vision in against-the-rule and distance vision in with-the-rule astigmatism in pseudophakic eyes: an eye model experimental study

Authors: Jay Won Rhim, Youngsub Eom, Seo Yeon Park, Su-Yeon Kang, Jong Suk Song, Hyo Myung Kim

Published in: BMC Ophthalmology | Issue 1/2020

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Abstract

Background

To elucidate whether eyelid squinting improves near and distance vision in against-the-rule (ATR) and with-the-rule (WTR) simple myopic astigmatism in pseudophakic eyes.

Methods

A refraction-model eye was mounted on a wavefront analyzer. The eyelid fissure was simulated using a slit placed horizontally in front of the model eye. Four different refractive statuses [− 1.50 diopters (D) and − 3.00 D of both WTR and ATR simple myopic astigmatism] were set using cylindrical lenses. For each refractive status (emmetropia, − 1.50 D WTR, − 1.50 D ATR, − 3.00 D WTR, and − 3.00 D ATR astigmatism), wavefront aberrations were measured, both with and without the slit, 40 times each.

Results

The 2 mm horizontal slit caused a hyperopic focus shift (+ 6.69 μm) in − 1.50 D WTR astigmatism, whereas, in − 1.50 D ATR astigmatism, it caused a myopic focus shift (− 2.01 μm). The astigmatism was decreased in the ATR astigmatism groups and increased in the emmetropia and WTR astigmatism groups, respectively. Total aberrations were decreased in the emmetropia and WTR astigmatism groups and increased in the ATR astigmatism groups. When the reference plane was set to the near plane, total aberrations were decreased in the ATR astigmatism groups.

Conclusion

As the horizontal slit was placed in front of the model eye, the focus moves nearer in ATR astigmatism and farther in WTR astigmatism. These effects of eyelid cause improvement of near vision of pseudophakic eyes with ATR astigmatism.
Literature
1.
go back to reference Remon L, Tornel M, Furlan WD. Visual acuity in simple myopic astigmatism: influence of cylinder axis. Optom Vis Sci. 2006;83(5):311–5.CrossRef Remon L, Tornel M, Furlan WD. Visual acuity in simple myopic astigmatism: influence of cylinder axis. Optom Vis Sci. 2006;83(5):311–5.CrossRef
2.
go back to reference Koch DD. Revisiting the conoid of sturm. J Cataract Refract Surg. 2006;32(7):1071–2.CrossRef Koch DD. Revisiting the conoid of sturm. J Cataract Refract Surg. 2006;32(7):1071–2.CrossRef
3.
go back to reference Nanavaty MA, Vasavada AR, Patel AS, Raj SM, Desai TH. Analysis of patients with good uncorrected distance and near vision after monofocal intraocular lens implantation. J Cataract Refract Surg. 2006;32(7):1091–7.CrossRef Nanavaty MA, Vasavada AR, Patel AS, Raj SM, Desai TH. Analysis of patients with good uncorrected distance and near vision after monofocal intraocular lens implantation. J Cataract Refract Surg. 2006;32(7):1091–7.CrossRef
4.
go back to reference Nagpal KM, Desai C, Trivedi RH, Vasavada AR. Is pseudophakic astigmatism a desirable goal? Indian J Ophthalmol. 2000;48(3):213–6.PubMed Nagpal KM, Desai C, Trivedi RH, Vasavada AR. Is pseudophakic astigmatism a desirable goal? Indian J Ophthalmol. 2000;48(3):213–6.PubMed
5.
go back to reference Trindade F, Oliveira A, Frasson M. Benefit of against-the-rule astigmatism to uncorrected near acuity. J Cataract Refract Surg. 1997;23(1):82–5.CrossRef Trindade F, Oliveira A, Frasson M. Benefit of against-the-rule astigmatism to uncorrected near acuity. J Cataract Refract Surg. 1997;23(1):82–5.CrossRef
6.
go back to reference Verzella F, Calossi A. Multifocal effect of against-the-rule myopic astigmatism in pseudophakic eyes. Refract Corneal Surg. 1993;9(1):58–61.PubMed Verzella F, Calossi A. Multifocal effect of against-the-rule myopic astigmatism in pseudophakic eyes. Refract Corneal Surg. 1993;9(1):58–61.PubMed
7.
go back to reference Wolffsohn JS, Bhogal G, Shah S. Effect of uncorrected astigmatism on vision. J Cataract Refract Surg. 2011;37(3):454–60.CrossRef Wolffsohn JS, Bhogal G, Shah S. Effect of uncorrected astigmatism on vision. J Cataract Refract Surg. 2011;37(3):454–60.CrossRef
8.
go back to reference Miller AD, Kris MJ, Griffiths AC. Effect of small focal errors on vision. Optom Vis Sci. 1997;74(7):521–6.CrossRef Miller AD, Kris MJ, Griffiths AC. Effect of small focal errors on vision. Optom Vis Sci. 1997;74(7):521–6.CrossRef
9.
go back to reference Wills J, Gillett R, Eastwell E, Abraham R, Coffey K, Webber A, Wood J. Effect of simulated astigmatic refractive error on reading performance in the young. Optom Vis Sci. 2012;89(3):271–6.CrossRef Wills J, Gillett R, Eastwell E, Abraham R, Coffey K, Webber A, Wood J. Effect of simulated astigmatic refractive error on reading performance in the young. Optom Vis Sci. 2012;89(3):271–6.CrossRef
10.
go back to reference Kobashi H, Kamiya K, Shimizu K, Kawamorita T, Uozato H. Effect of axis orientation on visual performance in astigmatic eyes. J Cataract Refract Surg. 2012;38(8):1352–9.CrossRef Kobashi H, Kamiya K, Shimizu K, Kawamorita T, Uozato H. Effect of axis orientation on visual performance in astigmatic eyes. J Cataract Refract Surg. 2012;38(8):1352–9.CrossRef
11.
go back to reference Ohlendorf A, Tabernero J, Schaeffel F. Visual acuity with simulated and real astigmatic defocus. Optom Vis Sci. 2011;88(5):562–9.CrossRef Ohlendorf A, Tabernero J, Schaeffel F. Visual acuity with simulated and real astigmatic defocus. Optom Vis Sci. 2011;88(5):562–9.CrossRef
12.
go back to reference Savage H, Rothstein M, Davuluri G, El Ghormli L, Zaetta DM. Myopic astigmatism and presbyopia trial. Am J Ophthalmol. 2003;135(5):628–32.CrossRef Savage H, Rothstein M, Davuluri G, El Ghormli L, Zaetta DM. Myopic astigmatism and presbyopia trial. Am J Ophthalmol. 2003;135(5):628–32.CrossRef
13.
go back to reference Vinas M, de Gracia P, Dorronsoro C, Sawides L, Marin G, Hernandez M, Marcos S. Astigmatism impact on visual performance: meridional and adaptational effects. Optom Vis Sci. 2013;90(12):1430–42.CrossRef Vinas M, de Gracia P, Dorronsoro C, Sawides L, Marin G, Hernandez M, Marcos S. Astigmatism impact on visual performance: meridional and adaptational effects. Optom Vis Sci. 2013;90(12):1430–42.CrossRef
14.
go back to reference Watanabe K, Negishi K, Kawai M, Torii H, Kaido M, Tsubota K. Effect of experimentally induced astigmatism on functional, conventional, and low-contrast visual acuity. J Refract Surg (Thorofare, NJ : 1995). 2013;29(1):19–24.CrossRef Watanabe K, Negishi K, Kawai M, Torii H, Kaido M, Tsubota K. Effect of experimentally induced astigmatism on functional, conventional, and low-contrast visual acuity. J Refract Surg (Thorofare, NJ : 1995). 2013;29(1):19–24.CrossRef
15.
go back to reference Atchison DA, Smith G, Efron N. The effect of pupil size on visual acuity in uncorrected and corrected myopia. Am J Optom Physiol Optic. 1979;56(5):315–23.CrossRef Atchison DA, Smith G, Efron N. The effect of pupil size on visual acuity in uncorrected and corrected myopia. Am J Optom Physiol Optic. 1979;56(5):315–23.CrossRef
16.
go back to reference Yang H, Lee M, Kim JB, Ahn J. Burst-shot infrared digital photography to determine scotopic pupil diameter. J Cataract Refract Surg. 2006;32(12):2113–7.CrossRef Yang H, Lee M, Kim JB, Ahn J. Burst-shot infrared digital photography to determine scotopic pupil diameter. J Cataract Refract Surg. 2006;32(12):2113–7.CrossRef
17.
go back to reference Altan C, Kaya V, Basarir B, Celik U, Azman E, Akar S, Demirok A, Yilmaz OF. Comparison of 3 pupillometers for determining scotopic pupil diameter. Eur J Ophthalmol. 2012;22(6):904–10.CrossRef Altan C, Kaya V, Basarir B, Celik U, Azman E, Akar S, Demirok A, Yilmaz OF. Comparison of 3 pupillometers for determining scotopic pupil diameter. Eur J Ophthalmol. 2012;22(6):904–10.CrossRef
18.
go back to reference Kamiya K, Kobashi H, Shimizu K, Kawamorita T, Uozato H. Effect of pupil size on uncorrected visual acuity in astigmatic eyes. Br J Ophthalmol. 2012;96(2):267–70.CrossRef Kamiya K, Kobashi H, Shimizu K, Kawamorita T, Uozato H. Effect of pupil size on uncorrected visual acuity in astigmatic eyes. Br J Ophthalmol. 2012;96(2):267–70.CrossRef
19.
go back to reference Linke SJ, Baviera J, Munzer G, Fricke OH, Richard G, Katz T. Mesopic pupil size in a refractive surgery population (13,959 eyes). Optom Vis Sci. 2012;89(8):1156–64.CrossRef Linke SJ, Baviera J, Munzer G, Fricke OH, Richard G, Katz T. Mesopic pupil size in a refractive surgery population (13,959 eyes). Optom Vis Sci. 2012;89(8):1156–64.CrossRef
20.
go back to reference Watanabe K, Negishi K, Dogru M, Yamaguchi T, Torii H, Tsubota K. Effect of pupil size on uncorrected visual acuity in pseudophakic eyes with astigmatism. J Refract Surg (Thorofare, NJ : 1995). 2013;29(1):25–9.CrossRef Watanabe K, Negishi K, Dogru M, Yamaguchi T, Torii H, Tsubota K. Effect of pupil size on uncorrected visual acuity in pseudophakic eyes with astigmatism. J Refract Surg (Thorofare, NJ : 1995). 2013;29(1):25–9.CrossRef
21.
go back to reference Bailey IL, Lovie JE. New design principles for visual acuity letter charts. Am J Optom Physiol Optic. 1976;53(11):740–5.CrossRef Bailey IL, Lovie JE. New design principles for visual acuity letter charts. Am J Optom Physiol Optic. 1976;53(11):740–5.CrossRef
22.
go back to reference Wesemann W. Visual acuity measured via the Freiburg visual acuity test (FVT), Bailey Lovie chart and Landolt Ring chart. Klin Monatsbl Augenheilkd. 2002;219(9):660–7.CrossRef Wesemann W. Visual acuity measured via the Freiburg visual acuity test (FVT), Bailey Lovie chart and Landolt Ring chart. Klin Monatsbl Augenheilkd. 2002;219(9):660–7.CrossRef
23.
go back to reference Dobson V, Maguire M, Orel-Bixler D, Quinn G, Ying GS, Vision in Preschoolers Study G. Visual acuity results in school-aged children and adults: Lea Symbols chart versus Bailey-Lovie chart. Optom Vis Sci. 2003;80(9):650–4.CrossRef Dobson V, Maguire M, Orel-Bixler D, Quinn G, Ying GS, Vision in Preschoolers Study G. Visual acuity results in school-aged children and adults: Lea Symbols chart versus Bailey-Lovie chart. Optom Vis Sci. 2003;80(9):650–4.CrossRef
24.
go back to reference Casagrande M, Baumeister M, Buhren J, Klaproth OK, Titke C, Kohnen T. Influence of additional astigmatism on distance-corrected near visual acuity and reading performance. Br J Ophthalmol. 2014;98(1):24–9.CrossRef Casagrande M, Baumeister M, Buhren J, Klaproth OK, Titke C, Kohnen T. Influence of additional astigmatism on distance-corrected near visual acuity and reading performance. Br J Ophthalmol. 2014;98(1):24–9.CrossRef
25.
go back to reference Shukla AV. Clinical optics primer for ophthalmic medical personnel: a guide to laws, formulae, calculations, and clinical applications. SLACK Inc.; 2009;164–72. Shukla AV. Clinical optics primer for ophthalmic medical personnel: a guide to laws, formulae, calculations, and clinical applications. SLACK Inc.; 2009;164–72.
26.
go back to reference Ghosh A, Collins MJ, Read SA, Davis BA, Iskander DR. The influence of downward gaze and accommodation on ocular aberrations over time. J Vis. 2011;11(10):17.CrossRef Ghosh A, Collins MJ, Read SA, Davis BA, Iskander DR. The influence of downward gaze and accommodation on ocular aberrations over time. J Vis. 2011;11(10):17.CrossRef
27.
go back to reference Kim JW, Lee H, Chang M, Park M, Lee TS, Baek S. What causes increased contrast sensitivity and improved functional visual acuity after upper eyelid blepharoplasty? J Craniofac Surg. 2013;24(5):1582–5.CrossRef Kim JW, Lee H, Chang M, Park M, Lee TS, Baek S. What causes increased contrast sensitivity and improved functional visual acuity after upper eyelid blepharoplasty? J Craniofac Surg. 2013;24(5):1582–5.CrossRef
28.
go back to reference Grey C, Yap M. Influence of lid position on astigmatism. Am J Optom Physiol Optic. 1986;63(12):966–9.CrossRef Grey C, Yap M. Influence of lid position on astigmatism. Am J Optom Physiol Optic. 1986;63(12):966–9.CrossRef
29.
go back to reference Buehren T, Collins MJ, Carney L. Corneal aberrations and reading. Optom Vis Sci. 2003;80(2):159–66.CrossRef Buehren T, Collins MJ, Carney L. Corneal aberrations and reading. Optom Vis Sci. 2003;80(2):159–66.CrossRef
30.
go back to reference Collins MJ, Buehren T, Trevor T, Statham M, Hansen J, Cavanagh DA. Factors influencing lid pressure on the cornea. Eye Contact Lens. 2006;32(4):168–73.CrossRef Collins MJ, Buehren T, Trevor T, Statham M, Hansen J, Cavanagh DA. Factors influencing lid pressure on the cornea. Eye Contact Lens. 2006;32(4):168–73.CrossRef
31.
go back to reference Han W, Kwan W, Wang J, Yip SP, Yap M. Influence of eyelid position on wavefront aberrations. Ophthalmic Physiol Opt. 2007;27(1):66–75.CrossRef Han W, Kwan W, Wang J, Yip SP, Yap M. Influence of eyelid position on wavefront aberrations. Ophthalmic Physiol Opt. 2007;27(1):66–75.CrossRef
32.
go back to reference Boev AN, Fountas KN, Karampelas I, Boev C, Machinis TG, Feltes C, Okosun I, Dimopoulos V, Troup C. Quantitative pupillometry: normative data in healthy pediatric volunteers. J Neurosurg. 2005;103(6 Suppl):496–500.PubMed Boev AN, Fountas KN, Karampelas I, Boev C, Machinis TG, Feltes C, Okosun I, Dimopoulos V, Troup C. Quantitative pupillometry: normative data in healthy pediatric volunteers. J Neurosurg. 2005;103(6 Suppl):496–500.PubMed
33.
go back to reference Taylor WR, Chen JW, Meltzer H, Gennarelli TA, Kelbch C, Knowlton S, Richardson J, Lutch MJ, Farin A, Hults KN, et al. Quantitative pupillometry, a new technology: normative data and preliminary observations in patients with acute head injury. Technical note. J Neurosurg. 2003;98(1):205–13.CrossRef Taylor WR, Chen JW, Meltzer H, Gennarelli TA, Kelbch C, Knowlton S, Richardson J, Lutch MJ, Farin A, Hults KN, et al. Quantitative pupillometry, a new technology: normative data and preliminary observations in patients with acute head injury. Technical note. J Neurosurg. 2003;98(1):205–13.CrossRef
34.
go back to reference Benjamin WJ. Borish's Clinical Refraction-E-Book: Elsevier Health Sciences; 2006;883. Benjamin WJ. Borish's Clinical Refraction-E-Book: Elsevier Health Sciences; 2006;883.
35.
go back to reference Charman WN. Pinholes and presbyopia: solution or sideshow? Ophthalmic Physiol Opt. 2019;39(1):1–10.CrossRef Charman WN. Pinholes and presbyopia: solution or sideshow? Ophthalmic Physiol Opt. 2019;39(1):1–10.CrossRef
36.
go back to reference Sawusch MR, Guyton DL. Optimal astigmatism to enhance depth of focus after cataract surgery. Ophthalmol. 1991;98(7):1025–9.CrossRef Sawusch MR, Guyton DL. Optimal astigmatism to enhance depth of focus after cataract surgery. Ophthalmol. 1991;98(7):1025–9.CrossRef
Metadata
Title
Eyelid squinting improves near vision in against-the-rule and distance vision in with-the-rule astigmatism in pseudophakic eyes: an eye model experimental study
Authors
Jay Won Rhim
Youngsub Eom
Seo Yeon Park
Su-Yeon Kang
Jong Suk Song
Hyo Myung Kim
Publication date
01-12-2020
Publisher
BioMed Central
Published in
BMC Ophthalmology / Issue 1/2020
Electronic ISSN: 1471-2415
DOI
https://doi.org/10.1186/s12886-019-1297-5

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