Peter R. Hoffmann to Biometry
This is a "connection" page, showing publications Peter R. Hoffmann has written about Biometry.
Connection Strength
6.997
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Langenbucher A, Szentm?ry N, Wendelstein J, Cayless A, Fassbind B, Hoffmann P. Considerations on the Haigis formula: Are better outcomes possible with tuning? Acta Ophthalmol. 2025 Aug; 103(5):e298-e309.
Score: 0.901
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Langenbucher A, Szentm?ry N, Cayless A, Weisensee J, Fabian E, Wendelstein J, Hoffmann P. Considerations on the Castrop formula for calculation of intraocular lens power. PLoS One. 2021; 16(6):e0252102.
Score: 0.692
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Langenbucher A, Szentm?ry N, Wendelstein J, Cayless A, Hoffmann P, Gatinel D. A two-step formula constant optimization strategy for minimal standard deviation and zero mean prediction error in IOL power calculation. Acta Ophthalmol. 2026 Mar; 104(2):181-192.
Score: 0.231
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Langenbucher A, Hoffmann P, Cayless A, Wendelstein J, Szentm?ry N. Conversion of disclosed lens power formula constants. J Cataract Refract Surg. 2025 Aug 01; 51(8):679-686.
Score: 0.231
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Langenbucher A, Wendelstein J, Cayless A, Olsen T, Hoffmann P, Szentm?ry N. Jackknife and bootstrapping resampling techniques to evaluate the precision of lens formula constants. Acta Ophthalmol. 2025 Sep; 103(6):e422-e433.
Score: 0.227
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Langenbucher A, Szentm?ry N, Wendelstein J, Cayless A, Hoffmann P, Cooke D. Repeatability of biometric measures from the LenStar LS900 in a cataractous population. PLoS One. 2025; 20(5):e0321786.
Score: 0.227
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Langenbucher A, Szentm?ry N, Cayless A, Cooke D, Hoffmann P, Wendelstein J. Prediction of refraction error after toric lens implantation with biometric input data uncertainties and power labelling tolerances. Clin Exp Ophthalmol. 2025 Jan-Feb; 53(1):26-38.
Score: 0.218
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Langenbucher A, Szentm?ry N, Wendelstein J, Cayless A, Hoffmann P, Gatinel D. Performance Evaluation of a Simple Strategy to Optimize Formula Constants for Zero Mean or Minimal Standard Deviation or Root-Mean-Squared Prediction Error in Intraocular Lens Power Calculation. Am J Ophthalmol. 2025 Jan; 269:282-292.
Score: 0.217
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Langenbucher A, Taroni L, Coutinho CP, Cayless A, Szentm?ry N, Hoffmann P, Wendelstein J, Savini G. Evaluating keratometry and corneal astigmatism data from biometers and anterior segment tomographers and mapping to reconstructed corneal astigmatism. Clin Exp Ophthalmol. 2024 Aug; 52(6):627-638.
Score: 0.212
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Langenbucher A, Wendelstein J, Szentm?ry N, Cayless A, Hoffmann P, Debellmaniere G, Gatinel D. Performance of a simplified strategy for formula constant optimisation in intraocular lens power calculation. Acta Ophthalmol. 2025 Feb; 103(1):e10-e18.
Score: 0.212
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Prediction of IOL decentration, tilt and axial position using anterior segment OCT data. Graefes Arch Clin Exp Ophthalmol. 2024 Mar; 262(3):835-846.
Score: 0.202
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Technical variability of cornea parameters derived from anterior segment OCT fitted with Fringe Zernike polynomials. Graefes Arch Clin Exp Ophthalmol. 2024 Feb; 262(2):505-517.
Score: 0.201
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Langenbucher A, Szentm?ry N, Cayless A, Gatinel D, Debellemani?re G, Wendelstein J, Hoffmann P. Monte-Carlo simulation of a thick lens IOL power calculation. Acta Ophthalmol. 2024 Feb; 102(1):e42-e52.
Score: 0.197
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Particle swarm optimisation strategies for IOL formula constant optimisation. Acta Ophthalmol. 2023 Nov; 101(7):775-782.
Score: 0.196
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Formula constant optimisation techniques including variation of keratometer or corneal refractive index and consideration for classical and modern IOL formulae. PLoS One. 2023; 18(2):e0282213.
Score: 0.195
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Bootstrap Outlier Identification in Clinical Datasets for Lens Power Formula Constant Optimization. Curr Eye Res. 2023 03; 48(3):263-269.
Score: 0.193
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Comparison of 2 modern swept-source optical biometers-IOLMaster 700 and Anterion. Graefes Arch Clin Exp Ophthalmol. 2023 Apr; 261(4):999-1010.
Score: 0.191
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Langenbucher A, Szentm?ry N, Cayless A, R?ggla V, Leydolt C, Wendelstein J, Hoffmann P. Similarity of eyes in a cataractous population-How reliable is the biometry of the fellow eye for lens power calculation? PLoS One. 2022; 17(6):e0269709.
Score: 0.186
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Prediction of ocular magnification and aniseikonia after cataract surgery. Acta Ophthalmol. 2022 Dec; 100(8):e1675-e1684.
Score: 0.185
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Langenbucher A, Szentm?ry N, Cayless A, Weisensee J, Wendelstein J, Hoffmann P. Translation model for CW chord to angle Alpha derived from a Monte-Carlo simulation based on raytracing. PLoS One. 2022; 17(5):e0267028.
Score: 0.185
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Strategies for formula constant optimisation for intraocular lens power calculation. PLoS One. 2022; 17(5):e0267352.
Score: 0.184
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Langenbucher A, Szentm?ry N, Cayless A, M?nninghoff L, Wortmann R, Wendelstein J, Hoffmann P. Translation model for anterior segment tomographic data to corneal spherical aberration derived from a Monte-Carlo simulation based on raytracing. Acta Ophthalmol. 2022 Dec; 100(8):e1665-e1674.
Score: 0.182
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Langenbucher A, Szentm?ry N, Cayless A, Wendelstein J, Hoffmann P. Prediction of the axial lens position after cataract surgery using deep learning algorithms and multilinear regression. Acta Ophthalmol. 2022 Nov; 100(7):e1378-e1384.
Score: 0.181
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Langenbucher A, Szentm?ry N, Cayless A, Weisensee J, Wendelstein J, Hoffmann P. Prediction of CW chord as a measure for the eye's orientation axis after cataract surgery from preoperative IOLMaster 700 measurement data. Acta Ophthalmol. 2022 Sep; 100(6):e1232-e1239.
Score: 0.179
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Langenbucher A, Szentm?ry N, Cayless A, Weisensee J, Wendelstein J, Hoffmann P. Prediction of corneal back surface power - Deep learning algorithm versus multivariate regression. Ophthalmic Physiol Opt. 2022 01; 42(1):185-194.
Score: 0.178
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Langenbucher A, Cayless A, Szentm?ry N, Weisensee J, Wendelstein J, Hoffmann P. Prediction of total corneal power from measured anterior corneal power on the IOLMaster 700 using a feedforward shallow neural network. Acta Ophthalmol. 2022 Aug; 100(5):e1080-e1087.
Score: 0.177
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Langenbucher A, Szentm?ry N, Cayless A, Hoffmann P, Wendelstein J, Pantanelli S. Evaluation of keratometric and total corneal astigmatism measurements from optical biometers and anterior segment tomographers and mapping to reconstructed corneal astigmatism vector components. PLoS One. 2025; 20(1):e0313574.
Score: 0.055
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Langenbucher A, Szentm?ry N, Wendelstein J, Cayless A, Hoffmann P, Goggin M. The Homburg-Adelaide toric IOL nomogram: How to predict corneal power vectors from preoperative IOLMaster 700 keratometry and total corneal power in toric IOL implantation. Acta Ophthalmol. 2025 Feb; 103(1):e19-e30.
Score: 0.054
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Langenbucher A, Szentm?ry N, Cayless A, Bolz M, Hoffmann P, Wendelstein J. Prediction of spectacle refraction uncertainties with discrete IOL power steps and manufacturing tolerances according to ISO using a Monte Carlo model. Br J Ophthalmol. 2024 May 21; 108(6):793-800.
Score: 0.053
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Langenbucher A, Wendelstein J, Cayless A, Hoffmann P, Szentm?ry N. Vector analysis of corneal astigmatism in cataractous eyes based on IOLMaster 700 biometry. PLoS One. 2024; 19(4):e0300576.
Score: 0.053
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Langenbucher A, Hoffmann P, Cayless A, Wendelstein J, Szentm?ry N. Evaluation of corneal power from an AS-OCT thick lens model and ray tracing: reliability of the keratometer index. J Cataract Refract Surg. 2024 04 01; 50(4):360-368.
Score: 0.053
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Langenbucher A, Hoffmann P, Cayless A, Wendelstein J, Szentm?ry N. Limitations of constant optimization with disclosed intraocular lens power formulae. J Cataract Refract Surg. 2024 03 01; 50(3):201-208.
Score: 0.052
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Langenbucher A, Szentm?ry N, Cayless A, Hoffmann P, Wendelstein J, Cooke D. Repeatability of biometric measures from the IOLMaster 700 in a cataractous population. PLoS One. 2024; 19(2):e0297869.
Score: 0.052
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Wendelstein JA, Hoffmann PC, Hoffer KJ, Langenbucher A, Findl O, Ruiss M, Bolz M, Riaz KM, Pantanelli SM, Debellemani?re G, Gatinel D, Cooke DL, Galzignato A, Yeo TK, Seiler TG, Zinkernagel M, Savini G. Differences Between Keratometry and Total Keratometry Measurements in a Large Dataset Obtained With a Modern Swept Source Optical Coherence Tomography Biometer. Am J Ophthalmol. 2024 04; 260:102-114.
Score: 0.052
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Wendelstein JA, Rothb?cher J, Heath M, McDonald MC, Hoffmann PC, Cooke DL, Seiler TG, Langenbucher A, Riaz KM. Influence and predictive value of optional parameters in new-generation intraocular lens formulas. J Cataract Refract Surg. 2023 08 01; 49(8):795-803.
Score: 0.050
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Langenbucher A, Hoffmann P, Cayless A, Bolz M, Wendelstein J, Szentm?ry N. Impact of uncertainties in biometric parameters on intraocular lens power formula predicted refraction using a Monte-Carlo simulation. Acta Ophthalmol. 2024 May; 102(3):e285-e295.
Score: 0.050
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Wendelstein JA, Reifeltshammer SA, Cooke DL, Hirnschall N, Hoffmann PC, Langenbucher A, Bolz M, Riaz KM. The 10,000 Eyes Study: Analysis of Keratometry, Abulafia-Koch regression transformation, and Biometric Eye Parameters Obtained With Swept-Source Optical Coherence Tomography. Am J Ophthalmol. 2023 01; 245:44-60.
Score: 0.047
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Langenbucher A, Hoffmann P, Cayless A, Wendelstein J, Bolz M, Szentm?ry N. Meridional ocular magnification after cataract surgery with toric and non-toric intraocular lenses. Graefes Arch Clin Exp Ophthalmol. 2022 Dec; 260(12):3869-3882.
Score: 0.047