Balgos MD, Vargas V, Alió J. Correction of presbyopia: an integrated update for the practicing surgeon. Taiwan J Ophthalmol. 2018;8:121–40.
Vargas-Fragoso V, Alió JL. Corneal compensation for presbyopia: PresbyLASIK: an updated review. Eye Screw. 2017;4:11.
Shetty R, Brar S, Sharma M, Dadachanji Z, Lalgudi VG. PresbyLASIK: A Review of PresbyMAX, Supracor, and Laser Mixed Vision: Principles, Planning, and Results. Indian J Ophthalmol. 2020;68:2723–31.
Alió JL, Amparo F, Ortiz D, Moreno L. Corneal multifocality with excimer laser for the correction of presbyopia. Curr Opin Ophthalmol. 2009;20:264–71.
Zeng X, Zhang Y, Kwong JSW, Zhang C, Li S, Sun F, et al. Methodological quality assessment tools for preclinical and clinical studies, systematic review and meta-analysis, and clinical practice guidelines: a systematic review. J Evid Based Med. 2015;8:2–10.
Kelly RE. Biliary problems in infancy and childhood. Problem Gen Surg. 1999;16:101–7.
Google Scholar
Sterne JA, Hernán MA, Reeves BC, Savović J, Berkman ND, Viswanathan M, et al. ROBINS-I: a tool for assessing risk of bias in non-randomized studies of interventions. BMJ. 2016;355:i4919.
Moga C, Guo B, Harstall C. Development of a quality assessment tool for case series studies using a modified Delphi technique. IHE Publ. 2012: 1–71. https://www.ihe.ca/advanced-search/development-of-a-quality-appraisal-tool-for-case-series-studies-using-a-modified-delphi-technique. Accessed June 2, 2021.
Guo B, Moga C, Harstall C, Schopflocher D. Principal component analysis is performed for a case series quality assessment checklist. J Clin Epidemiol. 2016;69:199–207.e2.
Kohnen T, Böhm M, Herzog M, Hemkeppler E, Petermann K, Lwowski C. Near visual acuity and patient-reported outcomes in presbyopic patients after bilateral multifocal aspheric laser excimer laser surgery in situ keratomileusis. J Refractory cataract surgery. 2020;46:944–52.
Leray B, Cassagne M, Soler V, Villegas EA, Triozon C, Perez GM, et al. Relationship between induced spherical aberration and depth of field after hyperopic LASIK in presbyopic patients. Ophthalmology. 2015;122:233–43.
Rahmania N, Salah I, Rampat R, Gatinel D. Clinical efficacy of laser-induced depth-of-field augmentation for the simultaneous correction of farsightedness and presbyopia. J Refract Surg. 2021;37:16–24.
Boucenna W, Hagège A, Lussato M, Morfeq H, Kochbati E, Jany B, et al. PresbyPRK vs presbyLASIK with the SUPRACOR algorithm and micromonovision in farsighted presbyopic patients: visual and refractive results at 12 months. J Refractory cataract surgery. 2021;47:878–85.
Avila MY, Vivas PR. Visual results in myopic and emmetropic hypermetropic patients with personalized aspheric ablation (Q factor) and micro-monovision. Int Ophthalmol. 2021;41:2179–85.
Ganesh S, Brar S, Gautam M, Sriprakash K. Visual and refractive outcomes after laser mixed vision using nonlinear aspherical micro-monovision. J Refract Surg. 2020;36:300–7.
Liu F, Zhang T, Liu Q. One-year results of presbyLASIK using hybrid bi-aspheric micro-monovision ablation profile in the correction of presbyopia and myopic astigmatism. Int J Ophthalmol. 2020;13:271–7.
Fu D, Zhao J, Zhou XT. Objective optical quality and visual results after the PresbyMAX monocular ablation profile. Int J Ophthalmol. 2020;13:1060–5.
Fu D, Zhao J, Zeng L, Zhou X. One-year outcome and satisfaction with presbyopia correction using the PresbyMAX® monocular ablation profile. Med before. 2020;7:589275.
Luger MHA, McAlinden C, Buckhurst PJ, Wolffsohn JS, Verma S, Arba-Mosquera S. Long-term results after LASIK using a hybrid micro-monovision bi-aspherical ablation profile for the correction of presbyopia. J Refract Surg. 2020;36:89–96.
Villanueva A, Vargas V, Mas D, Torky M, Alió JL. Long-term corneal multifocal stability following a presbyLASIK technique analyzed by a light propagation algorithm. Clin Exp Optom. 2019;102:496–500.
Pajic B, Pajic-Eggspuehler B, Mueller J, Cvejic Z, Studer H. A new laser refractive surgical treatment for presbyopia: optics-based personalization for better clinical outcomes. Sensors. 2017;17:1367.
Chan TCY, Kwok PSK, Jhanji V, Woo VCP, Ng ALK. Correction of presbyopia using monocular bi-aspheric ablation profile (PresbyMAX) in hyperopic eyes: results at 1 year. J Refract Surg. 2017;33:37–43.
Vastardis I, Pajic-Eggspühler B, Müller J, Cvejic Z, Pajic B. Profile of femtosecond laser-assisted in situ multifocal keratomileusis ablation using a mini-monovision approach for presbyopic patients with farsightedness. Clin Ophthalmol. 2016;10:1245–56.
Courtin R, Saad A, Grise-Dulac A, Guilbert E, Gatinel D. Changes in corneal aberrations and vision after monovision in hyperopic patients after using a personalized aspheric ablation profile to increase corneal Asphericity (Q factor ). J Refract Surg. 2016;32:734–41.
Wang Yin GH, McAlinden C, Pieri E, Giulardi C, Holweck G, Hoffart L. Surgical treatment of presbyopia with central presbyopic keratomileusis: one-year results. J Refractory cataract surgery. 2016;42:1415–23.
Saib N, Abrieu-Lacaille M, Berguiga M, Rambaud C, Froussart-Maille F, Rigal-Sastourne JC. PresbycentraleLASIK for hyperopia and presbyopia by micro-monovision with the Technolas 217P platform and the SUPRACOR algorithm. J Refract Surg. 2015;31:540–6.
Soler Tomás JR, Fuentes-Páez G, Burillo S. PresbyLASIK symmetrical versus asymmetrical: results after 18 months and patient satisfaction. Cornea. 2015;34:651–7.
Luger MHA, McAlinden C, Buckhurst PJ, Wolffsohn JS, Verma S, Arba Mosquera S. Presbyopic LASIK using a micro-monovision bi-aspheric hybrid ablation profile for presbyopic corneal treatments. Am J Ophthalmol. 2015;160:493–505.
Gifford P, Kang P, Swarbrick H, Versace P. Changes in corneal aberrations and vision after Presbylasik refractive surgery using the MEL 80 platform. J Refract Surg. 2014;30:598–603.
Luger MH, Ewering T, Arba-Mosquera S. One-year experience in correcting presbyopia with central multifocal biaspheric keratomileusis presbyopia laser in situ. Cornea. 2013;32:644–52.
Baudu P, Penin F, Arba, Mosquera S. Uncorrected binocular performance after biaspheric ablation profile for presbyopic corneal treatment using AMARIS with the PresbyMAX module. Am J Ophthalmol. 2013;155:636–47. 47.e1
Uthoff D, Pölzl M, Hepper D, Holland D. A new method of corneal modulation with excimer laser for the simultaneous correction of presbyopia and ametropia. Graefes Arch Clin Exp Ophthalmol. 2012;250:1649–61.
Fernández J, Rodríguez-Vallejo M, Burguera N, Rocha-de-Lossada C, Piñero DP. Spherical aberration to enlarge depth of field: a review for the anterior segment surgeon. J Refractory cataract surgery. 2021;47:1587–95.
Legras R, Benard Y, Lopez-Gil N. Effect of coma and spherical aberration on measured depth of field using adaptive optics and computationally blurred images. J Refractory cataract surgery. 2012;38:458–69.
Benard Y, Lopez-Gil N, Legras R. Subjective depth-of-field optimization with combinations of fourth- and sixth-order spherical aberration. Vis Res. 2011;51:2471–7.
Pinelli R, Ortiz D, Simonetto A, Bacchi C, Sala E, Alió JL. Correction of presbyopia in farsightedness with a centre-to-centre, paracentral-near technique using the Technolas 217z platform. J Refract Surg. 2008;24:494–500.
Epstein RL, Gurgos MA. Treatment of presbyopia with monocular peripheral presbyopiaLASIK. J Refract Surg. 2009;25:516–23.