Search results for "Lens implantation"

showing 10 items of 140 documents

Determining postoperative anterior chamber depth

2003

Abstract Purpose: To compare measured and calculated postoperative anterior chamber depths (ACDs). Setting: Department of Ophthalmology and Institute of Medical Physics, University of Vienna, Vienna, Austria, and Department of Ophthalmology, University of Mainz, Mainz, Germany. Methods: The postoperative ACD was measured in 189 pseudophakic eyes using a laboratory prototype of partial coherence interferometry (PCI). In 6 intraocular lens (IOL) groups, the mean ACD was calculated by ray tracing based on the best-known A-constants of the SRK formulas. In addition, for each IOL type, each measured ACD was compared with a value calculated using the individual spherical equivalent of the postope…

medicine.medical_specialtyBiometryLightPseudophakiaAnterior Chambermedicine.medical_treatmentIntraocular lensSpherical equivalentLens Implantation IntraocularPower calculationsOphthalmologymedicineHumansPostoperative PeriodLenses Intraocularbusiness.industryModels TheoreticalCataract surgeryRefractionSensory SystemsOphthalmologyInterferometryPartial coherence interferometryConventional PCISurgerybusinessJournal of Cataract and Refractive Surgery
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Implantation of a custom intraocular lens with a 30-diopter torus for the correction of high astigmatism after penetrating keratoplasty.

2003

Abstract We present a 62-year-old woman who had implantation of an intraocular lens (IOL) with a torus of 30.0 diopters (D) in an eye after penetrating keratoplasty. The patient presented with cataract and a best corrected visual acuity of 20/400. Penetrating keratoplasty was performed in 1975 because of decompensated keratoconus. With a clear but inferiorly decentered corneal graft, visual acuity was limited because of keratoplasty-related high corneal astigmatism of 22.5@156 that could not be successfully treated with spectacles or contact lenses. A custom toric IOL with –30.0 D of cylindrical power was implanted in the capsular bag via a sclerocorneal tunnel incision. Additionally, a sph…

medicine.medical_specialtyKeratoconusRefractive errorVisual acuitygenetic structuresmedicine.medical_treatmentEye diseaseVisual AcuityIntraocular lensAstigmatismKeratoconusProsthesis DesignCataractHigh astigmatismLens Implantation IntraocularOphthalmologymedicineHumansDioptreLenses IntraocularPhacoemulsificationbusiness.industryAstigmatismCorneal TopographyMiddle Agedmedicine.diseaseeye diseasesSensory SystemsOphthalmologyOptometrySurgeryFemalesense organsmedicine.symptombusinessKeratoplasty PenetratingJournal of cataract and refractive surgery
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Optical analysis to predict outcomes after implantation of a double intraocular lens magnification device.

2007

Purpose To analyze the effect of different optical parameters of the eye on the outcomes of implantation of a double intraocular lens (IOL) magnification device in patients with low vision. Setting Fundacion Oftalmologica del Mediterraneo, Valencia, Spain. Methods The eye's refraction and magnification before and after surgery were evaluated using a theoretical eye model based on paraxial optics approximation. Four parameters on which refraction and magnification are dependent were evaluated: anterior chamber depth (ACD), axial length (AL), mean keratometry (Km), and the distance between the 2 implanted IOLs. The 4 variables were analyzed separately in the first stage. Next, different combi…

medicine.medical_specialtyOptics and PhotonicsBiometrygenetic structuresAnterior Chambermedicine.medical_treatmentMagnificationVision LowIntraocular lensEyeRefraction Ocularlaw.inventionOpticsLens Implantation IntraocularlawOphthalmologymedicineMyopiaHumansIn patientPhysicsLenses IntraocularKeratometerbusiness.industryParaxial approximationModels TheoreticalMagnification deviceRefractioneye diseasesSensory SystemsLow visionOphthalmologyHyperopiaTreatment OutcomeSurgerysense organsbusinessJournal of cataract and refractive surgery
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Changes in higher-order aberrations after implantation of a foldable iris-claw lens in myopic phakic eyes

2006

Purpose To evaluate the change in higher-order aberrations (HOAs) after implantation of a foldable iris-claw phakic intraocular lens (pIOL) in myopic eyes. Setting Department of Ophthalmology, Johannes Gutenberg-University, Mainz, Germany. Methods This prospective nonrandomized comparative self-controlled trial included 41 eyes that had implantation of a foldable iris-claw pIOL between July 2003 and November 2004. All patient data for HOAs (Zernike coefficient) were measured and calculated using the same pupil size preoperatively and postoperatively, and the root-mean-square (RMS) wavefront error was calculated. Examinations were performed preoperatively as well as 1 week and 3, 6, and 12 m…

medicine.medical_specialtyRefractive errorgenetic structuresAnterior ChamberEye diseaseVisual AcuityIrisPhakic intraocular lensCorneaVision disorderLens Implantation IntraocularOphthalmologyLens CrystallineMyopiaHumansMedicineProspective StudiesIris clawDioptreLenses Intraocularbusiness.industryRefractive Errorsmedicine.diseaseeye diseasesSensory SystemsOphthalmologyAberrations of the eyemedicine.anatomical_structureLens (anatomy)Silicone ElastomersSurgerysense organsmedicine.symptombusinessJournal of Cataract and Refractive Surgery
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Reading ability with 3 multifocal intraocular lens models.

2006

Purpose To prospectively evaluate reading performance with of 3 types of multifocal intraocular lenses (IOLs) under different lighting conditions based on reading acuity and reading speed tests. Setting Augenklinik, Bad Hersfeld, Germany. Methods This randomized study comprised 60 cataract patients (120 eyes) randomly assigned to receive an SA40N IOL (AMO) (Group 1, 20 patients), Tecnis ZM001 IOL (AMO) (Group 2, 20 patients), or AcrySof ReSTOR SA60D3 IOL (Alcon) (Group 3, 20 patients). Pupil size and reading ability at near (visual acuity, reading speed) without correction, with best distance correction, and with best near correction were assessed 6 weeks postoperatively under low-light con…

medicine.medical_specialtyVisual acuitygenetic structuresLightPseudophakiamedicine.medical_treatmentmedia_common.quotation_subjectEye diseaseVisual AcuityIntraocular lensContrast SensitivityLens Implantation IntraocularOphthalmologyReading (process)medicineHumansProspective Studiesmedia_commonLenses IntraocularPhacoemulsificationbusiness.industrySignificant differencePupil sizePupilMultifocal intraocular lensMiddle Agedmedicine.diseaseDistance correctioneye diseasesSensory SystemsOphthalmologyReadingOptometrySurgerysense organsmedicine.symptombusinessJournal of cataract and refractive surgery
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Postoperative Lens Position Preoperatively Determined by Scheimpflug Photography

1999

The position of the artificial lens has an important influence on refractive power calculation. We compared the position of the crystalline lens with that of the artificial lens after cataract surgery by means of Scheimpflug photography. A difference in position of approximately 0.8 mm in the anterior direction could be determined.

medicine.medical_specialtygenetic structuresComputer Science::Neural and Evolutionary ComputationScheimpflug principlePhysics::OpticsAfter cataractOptical powerCataract ExtractionAstrophysics::Cosmology and Extragalactic Astrophysicslaw.inventionCataract extractionCellular and Molecular NeuroscienceLens Implantation IntraocularPosition (vector)lawProsthesis FittingOphthalmologyLens CrystallinePreoperative Caremental disordersPhotographymedicineHumansPostoperative PeriodLenses Intraocularbusiness.industryPhotographyGeneral Medicineeye diseasesSensory SystemsLens (optics)OphthalmologyOptometrysense organsbusinesspsychological phenomena and processesOphthalmic Research
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Lens implant selection with absence of capsular support.

2001

If contact lens or spectacle correction is not viable, little debate exists that the secondary placement of an intra-ocular lens (IOL) is the method of choice in the absence of capsular support. The choice of IOL mainly depends on the preoperative status of the eye (eg, aphakia in children) and the selected location for the implant. Theoretically, there are several IOL implantation approaches in cases without capsular support: an angle-supported anterior chamber (AC) IOL, an iris-fixated ACIOL, an iris-sutured or iris-fixated posterior chamber (PC) IOL and a transsclerally sutured PCIOL. No consensus exists, however, on the indications as well as on the relative safety and efficacy of these…

medicine.medical_specialtygenetic structuresLens Capsule CrystallineGlaucomaProsthesis DesignAphakiaLens Implantation IntraocularAnterior Eye SegmentCorneaOphthalmologyProsthesis FittingMedicineHumansLenses Intraocularbusiness.industrySuture TechniquesGeneral Medicinemedicine.diseaseeye diseasesAnterior Eye SegmentContact lensOphthalmologymedicine.anatomical_structureAniridiasense organsImplantbusinessShallow anterior chamberCurrent opinion in ophthalmology
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The "sandwich technique" for iris-fixated phakic intraocular lens implantation.

2006

ABSTRACT PURPOSE: To describe a new technique of implantation of the Artisan/Verisyse phakic intraocular lens (PIOL). METHODS: After PIOL insertion into the anterior chamber, a bolus of a high viscosity ophthalmic viseosurgical device (OVD) is placed over the optic, separating it widely from the endothelium. RESULTS: The technique decreases the chance of endothelial damage during enclavation. CONCLUSIONS: A bolus of a high viscosity OVD placed on the anterior surface of the Artisan/Verisyse PIOL may make enclavation safer. [J Refract Surg. 2006;22:96-98.]

medicine.medical_specialtygenetic structuresbusiness.industryAnterior Chambermedicine.medical_treatmentSuture TechniquesIrisIntraocular lensAnterior surfacePhakic intraocular lensRefractive Surgical ProceduresOphthalmologyLens Implantation IntraocularOphthalmologymedicineHumansSurgerybusinessSandwich techniqueJournal of refractive surgery (Thorofare, N.J. : 1995)
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New Forceps and Spatula for Easy Retropupillary Implantation of Iris Claw Lenses in Aphakia: Experience in 4 Years of Use

2008

PURPOSE. Retropupillary implantation of an iris claw lens offers a rapid and atraumatic approach for rehabilitation of aphakic eyes. The difficulty in the implantation process arises because of the possibility of losing the intraocular lens (IOL) into the vitreous cavity and the need to change the hand holding the forceps during the enclavation. M ETHODS. The new forceps design radically changes the method of grasping an IOL. It contains an extendable supporting plate with a hook-like end. The instrument achieves a horizontal three-point fixation at the edge of the implant in the 6 and 12 o’clock position in order to prevent slippage into the vitreous cavity during the inclination. The supp…

medicine.medical_specialtygenetic structuresmedicine.medical_treatmentForcepsIrisIntraocular lensAphakia PostcataractAphakiaVitreous cavitylaw.inventionFixation (surgical)Lens Implantation IntraocularlawOphthalmologymedicineHumansIris clawLenses IntraocularPhacoemulsificationbusiness.industryEquipment DesignGeneral Medicinemedicine.diseaseCentrationeye diseasesSurgeryLens (optics)Ophthalmologysense organsbusinessEuropean Journal of Ophthalmology
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Optical quality of hyperopic and myopic phakic intraocular lenses

2013

Aims: To assess and compare the optical quality of the myopic and hyperopic implantable collamer lens (ICL) from its wavefront aberrations for different powers and pupil diameters. Settings and Design: Prospective study. Material and Methods: The wavefront aberrations of two myopic (−3 and −6 diopters (D)) and two hyperopic V4b ICLs (+3 and +6D) were measured in vitro . To assess and compare the optical quality of different powers of ICLs, we analyzed the root mean square (RMS) of total higher order aberrations (HOAs), trefoil, coma, tetrafoil, secondary astigmatism, and spherical aberration at 3- and 4.5-mm pupil. In addition, the point spread functions (PSFs) of each ICL evaluated were ca…

steep corneal curvatureintravitreallacrimal fossaRefractive errorvisual acuitygenetic structurespterygium surgerystandard automated perimetryComa (optics)BlindnessPhakic intraocular lenslaw.inventionsubconjunctival bevacizumab injectionCorneaLens Implantation Intraocularlcsh:Ophthalmologylawmodified deep anterior lamellar keratoplastyMitomycin CMaterials TestingAutogenous tissue graftingProspective StudiesDioptreoptical qualityshort wave automated perimetryexcimer lasernon-proliferative diabetic retinopathyMean deviationin vitroheavy silicone oilBevacizumabLens (optics)Aberrations of the eyeSpherical aberrationHyperopiaAntimicrobial effectOriginal ArticleTriamcinolone acetonidehuman trabecular meshwork cellsPhakic Intraocular Lensesmedicine.medical_specialtyImaging in glaucomadisability evaluationconventional silicone oiltriamcinoloneProsthesis DesignKeratoconusphotorefractive keratectomyOphthalmologygrowth factorsmedicineHumansmyopiamyopic implantable collamer lensshort fluctuationsWavefrontmacular edemaoptical coherence tomographyendophthalmitis agentsbusiness.industrybranch retinal vein occlusionretinal nerve fiber layerpterygium recurrencemedicine.diseaseeye diseasesOphthalmologypediatricwavefront aberrationsquality of lifelcsh:RE1-994bypass surgeryHyperopic implantable collamer lenslacrimal drainage systemsense organsbusinessIndian Journal of Ophthalmology
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