2012, Number 2
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Rev Cub Oftal 2012; 25 (2)
Personalization of constants in the intraocular lens calculation formulas
Miranda CA, Hernández SJR, Santiesteban GI, Ramos LM, Ramos PY, Padilla GCM
Language: Spanish
References: 43
Page:
PDF size: 131.45 Kb.
ABSTRACT
Objective: to personalize the A, surgeon factor and anterior chamber depth constants for intraocular lens calculation formulas in the cataract surgery at the “Ramón Pando Ferrer” Cuban Ophthalmological Institute from May 2007 to January 2011.
Method: a retrospective and descriptive study was made to study the A constant, the surgeon factor and the anterior chamber depth. Additionally, the preoperative axial length was evaluated by IOL Master, as well as the best uncorrected visual acuity, the expected and the obtained spherical component, and the refractive results.
Results: the constants optimized by the partial coherence interferometry were different from those suggested by the intraocular lens manufacturers. These customized constants for each surgeon did not show significant differences among them. The optimized constants according to the axial lengths showed significant differences in the three study groups. The difference between the implanted lens and the estimated lens based on the new constants was lower than one dioptre of error in 83.1 % of patients. Good visual correction in relation with the difference between the expected and the final refractions was attained in 75.4 % of patients.
Conclusions: the partial coherence interferometry-optimized constants showed higher values than those suggested by the manufacturer. The constant optimization for the intraocular lens calculation by IOL Master allows, according to the ocular individual features (axial length), using the adequate formula and increasing the predictability of postoperative refractive results.
REFERENCES
Apple DJ, Trivedi RH. Sir Nicholas Harold Ridley, Kt, MD, FRCS, FRS: contributions in addition to the intraocular lens. Arch Ophthalmol. 2002;120(9):1198-1202.
Astbury N, Ramamurthy R. ¿Cómo evitar errores en biometría? Salud Ocular Comunitaria. 2007;2(3):17-8.
Escobar-Gomez M, Apple D, Vargas L. Tribute for Sir Nicholas Harold Ridley: inventor of intraocular lenses. Arch Soc Esp Oftalmol. 2011;86(11):687-8.
Serrano Prado A, Nava Hernández GN. Cálculo del poder dióptrico de las lentes intraoculares. ¿Cómo evitar la sorpresa refractiva? Rev Méx Oftalmol. 2009;83(5):272-80.
Barraquer J. Cataract surgery and IOL implantation. Documenta Ophthalmologica. 1992;81(3):267-80.
Fyodorov SN, Kolina AN, Kolinko AL. Estimation of optical power of the intraocular lens. Vestn Ophthalmol. 1967;80(4):27-31.
Hoffer KJ, Mortensen J. An update on IOL Power Calculation Formulas. En: Garg A, Lin JT, Latkany R, Bovet J, Haigis W, editores. Mastering in the Techniques of IOL Power Calculations. New Delhi: Jaypee Brothers Medical Publishers; 2009. p. 51-6.
Retzlaff JA, Sanders DR, Kraff MC. Development of the SRK/T intraocular lens implants power calculation formula. J Cataract Refract Surg. 1990;16(3):333-40.
Hoffer KJ. Reply: Errata in printed Hoffer Q formula. J Cataract Refractive Surg. 2007;33(1):2-3.
Shammas HJ, Hoffer KJ, Shammas MC. Scheimpflug photography keratometry readings for routine intraocular lens power calculation. J Cataract Refract Surg. 2009;35(2):330-4.
Thijssen JM. The emmetropic and the iseikonic implant lens: computer calculation of the refractive power and its accuracy. Ophthalmologica. 1975;171(6):467-86.
Holladay JT. Standardizing constants for ultrasonic biometry, keratometry, and intraocular lens power calculations. J Cataract Refract Surg. 1997;23(9):1356-70.
Olsen T. Prediction of the effective postoperative (intraocular lens) anterior chamber depth. J Cataract Refract Surg. 2006;32(3):419-24.
Holladay JT, Prager TC, Chandler TY, Musgrove KH, Lewis JW, Ruiz RS. A three-part system for refining intraocular lens power calculations. J Cataract Refract Surg. 1988;14(1):17-24.
Haigis W. IOL Calculation in long and short eyes. In: Garg A, Lin JT, editores. Mastering intraocular lenses (IOLs). New Delhi: Jaypee Brothers Medical Publisher; 2007. p. 92-9.
Hoffer KJ, Mortensen J. Customization of IOL formulas. En: Garg A, Lin JT. Latkany R, Bovet J, Haigis W, editores. Mastering in the Techniques of IOL Power Calculations. New Delhi: Jaypee Brothers Medical Publishers; 2009. p. 121-4.
Zuberbuhler B, Morrell AJ. Errata in printed Hoffer Q formula. J Cataract Refract Surg. 2007;33(2):2_3.
Petermeier K, Gekeler F, Messias A, Spitzer MS, Haigis W, Szurman P. Intraocular lens power calculation and optimized constants for highly myopic eyes. J Cataract Refract Surg. 2009;35(9):1575-81.
Olsen T. Improved accuracy of intraocular lens power calculation with the Zeiss IOL Master. Acta Ophthalmol Scandinava. 2007;85(1):84-7.
Madge SN, Khong CH, Lamont M, Bansal A, Antcliff RJ. Optimization of biometry for intraocular lens implantation using the Zeiss IOL Master. Acta Ophthalmologica Scandinava. 2005;83(4):436-8.
Santiesteban FR. Historia de la Oftalmología en Cuba. 2da. ed. La Habana: Editorial Ciencias Médicas; 2006. p. 96-189.
Gale RP, Saldana M, Johnston RL, Zuberbuhler B, McKibbin M. Benchmark standards for refractive outcomes after NHS cataract surgery. Eye. 2009;23(1):149-52.
Aristodemou P, Knox Cartwright NE, Sparrow JM, Johnston RL. Intraocular lens formula constant optimization and partial coherence interferometry biometry: Refractive outcomes in 8108 eyes after cataract surgery. J Cataract Refract Surg. 2011;37(1):50-62.
Hernández Silva JR, Padilla González CM, Ramos López M, Rios Cazo R, Río Torres M. Personalización de las fórmulas de cálculo de la lente intraocular. Rev Cubana Oftalmol. 2004 [citado 13 de diciembre de 2011];17(2). Disponible en: http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S0864-21762004000200007
Binkhorst RD. Intraocular lens power calculation manual: A guide to the author´s. Ticc-40 programs. 3ra. ed. New York: R.D. Binkhorts; 1984.
Holladay JT, Prager TC, Chandler TY, Musgrove KH, Lewis JW, Ruiz RS. A three-part system for refining intraocular lens power calculation. J Cataract Refract Surg. 1988;14(1):17-24.
Olsen T. Prediction of intraocular lens position after cataract extraction. J Cataract Refract Surg. 1986;12(4):376-9.
Sanders DR, Retzlaff J, Kraff MC. Comparison of the SRKII formula and other second generation formulas. J Cataract Refract Surg. 1990;16(3):136-41.
Retzlaff J, Sanders DR, Kraff MC. Development of the SRK/T intraocular lens implants power calculation formula. J Cataract Refractive Surg. 1990;16(3):333-40.
Hoffer KJ. The Hoffer Q formula: A comparison of theoretic and regression formulas. J Cataract Refract Surg. 1993;19(6):700-11.
Holladay JT. Resultados clínicos con el uso de la fórmula de Holladay 2 para el cálculo de LIO. J Cataract Refractive Surg. 2000;26(8):1233-7.
Haigis W. IOL Calculation according to Haigis. Graefes Arch Clin Exp Ophthalmol. 2004;238(9):765-73.
Ballate E, Márquez M, Rankin L, Salazar M. Errores en el cálculo del poder dióptrico del lente intraocular. Rev Cubana Oftalmol. 1998 [citado: 13 de diciembre de 2011];11(1):32-8. Disponible en: http://bvs.sld.cu/revistas/oft/vol11_1_98/oft05198.htm
Santiesteban I, Pérez EC, Capote A, Montero E, Pedroso A, Rodríguez B. Efectividad del cálculo del poder dióptrico de la lente intraocular con interferometría parcialmente coherente. Rev Cubana Oftalmol. 2010 [citado: 13 de diciembre de 2011];23(1). Disponible en: http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S0864-21762010000100009&lng=es&nrm=iso&tlng=es
Sánchez-León F. LASIK post cirugía del cristalino: En: Sánchez Galeana C. Lasik-Lasek. Nuevos horizontes en la calidad de la visión. Panamá: Highlights of Ophthalmology; 2003. p. 201-5.
Curbelo Cunill L, Hernández Silva JR, Lanz L, Ramos López M, Río Torres M, Fernández Vázquez G, et al. Resultados de la cirugía de cataratas por la técnica de Facoemulsificación con Quick Chop. Rev Cubana Oftalmol. 2007 [citado: 13 de diciembre de 2011];20(2). Disponible en: http://bvs.sld.cu/revistas/oft/vol20_2_07/oft02207.html
Hoffer KJ, Shammas HJ, Savini G. Comparison of 2 laser instruments for measuring axial length. J Cataract Refract Surg. 2010;36(4):644-8.
Haigis W, Lege B, Miller N, Schneider B. Comparison of immersion ultrasound biometry and partial coherence interferometry for IOL calculation according to Haigis. Graefe´s Arch Clin Exp Ophthalmol. 2000;238(9):765-3.
Montés-Micó R, Ferrer-Blasco T, Charman WN, Cerviño A, Alfonso JF, Fernández _Vega L. Optical quality of the eye after lens replacement with a psedoaccommodating intraocular lens. J Cataract Refract Surg. 2008;34(5):763-8.
Alfonso JF, Fernández-Vega L, Señaris A, Montes-Micó R. Prospective study of the Acri.LISA bifocal intraocular lens. J Cataract Refract Surg. 2007;33(11):1930-5.
Landers J, Gogging M. An inter-eye comparison of refractive outcomes following cataract surgery. J Refract Surg. 2010;26(3):197-200.
Alió JL, Montés-Micó R. Wavefront-guided versus standard LASIK enhancement for residual refractive errors. Ophthalmology. 2006;113(2):191-7.
Orts P, Devesa P, Tañá P. Interferometría de coherencia parcial: estudio comparativo entre la interferometría de coherencia parcial y la biometría ultrasónica para el cálculo de la LIO. Microcirugía ocular. 2001 [citado: 13 de diciembre de 2011];(1). Disponible en: http://www.oftalmo.com/secoir/secoir2001/rev01-1/01a-02.htm