Radhika Rampat
Moorfields Eye Hospital
26 Papers
6 Citations
Radhika Rampat is an academic researcher from Moorfields Eye Hospital. The author has contributed to research in topics: Medicine & Keratoconus. The author has an hindex of 4, co-authored 12 publications.
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Papers
Multifocal and Extended Depth-of-Focus Intraocular Lenses in 2020.
Radhika Rampat,Damien Gatinel +1 more
TL;DR: The range of vision targeted, pupil dependence, toric availability as well as type of optical platform is provided as a practical guide to demystify existing terminology on the market that may create interest around a 'new' design that is actually not novel at all.
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The PEARL-DGS Formula: The Development of an Open-source Machine Learning-based Thick IOL Calculation Formula.
Guillaume Debellemanière,Mathieu Dubois,Mathieu Gauvin,Avi Wallerstein,Luis F. Brenner,Radhika Rampat,Alain Saad,Damien Gatinel +7 more
TL;DR: In this article, an open-source, reproducible, step-by-step method was described to design sum-of-segments thick intraocular lens (IOL) calculation formulas, and to evaluate a formula built using this methodology.
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Management of keratoconus: an updated review
Rashmi Deshmukh,Z. Z. Ong,Radhika Rampat,Jorge L. Alió del Barrio,Ankur Barua,Marcus Ang,J. S. Mehta,Dalia G. Said,Harminder S Dua,Renato Ambrósio,Darren Shu Jeng Ting +10 more
TL;DR: A comprehensive overview of the current and emerging treatment of keratoconus and a treatment algorithm for systematically guiding the management of this common clinical entity is provided in this article , where artificial intelligence-assisted algorithms are used to detect and progression prediction.
Determining the Theoretical Effective Lens Position of Thick Intraocular Lenses for Machine Learning–Based IOL Power Calculation and Simulation
TL;DR: In this article, a study was conducted to ascertain the impact of variations in design and IOL power, on the refractive outcomes of cataract surgery, where the authors presented a formula to back-calculate the theoretical position of the principal object plane of an intraocular lens (IOL), as well as the theoretical anatomic position in a thick lens eye model.
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A simplified method to minimize systematic bias of single-optimized intraocular lens power calculation formulas.
Damien Gatinel,Guillaume Debellemanière,Alain Saad,Radhika Rampat,Avi Wallerstein,Mathieu Gauvin,Jacques Malet +6 more
TL;DR: In this article , a simplified method to optimize lens constants to zero the mean prediction error (ME) of an intraocular lens (IOL) calculation formula, without the need to program the formula itself, by exploring the influence of IOL and corneal power on the refractive impact of variations in effective lens position was proposed.
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