Literature DB >> 29738589

Measurement of Posterior Corneal Astigmatism by the IOLMaster 700.

Benjamin R LaHood, Michael Goggin.   

Abstract

PURPOSE: To provide the first description of posterior corneal astigmatism as measured by the IOLMaster 700 (Carl Zeiss Meditec, Jena, Germany) and assess how its characteristics compare to previous measurements from other devices.
METHODS: A total of 1,098 routine IOLMaster 700 biometric measurements were analyzed to provide magnitudes and orientation of steep and flat axes of anterior and posterior corneal astigmatism. Subgroup analysis was conducted to assess correlation of posterior corneal astigmatism characteristics to anterior corneal astigmatism and describe the distribution of posterior corneal astigmatism with age.
RESULTS: Mean posterior corneal astigmatism was 0.24 ± 0.15 diopters (D). The steep axis of posterior corneal astigmatism was vertically oriented in 73.32% of measurements. Correlation between the magnitude of anterior and posterior corneal astigmatism was greatest when the steep axis of the anterior corneal astigmatism was oriented vertically (r = 0.68, P < .0001). Vertical orientation of the steep axis of anterior corneal astigmatism became less common as age increased, whereas for posterior corneal astigmatism it remained by far the most common orientation.
CONCLUSIONS: This first description of posterior corneal astigmatism measurement by the IOLMaster 700 found the average magnitude of posterior corneal astigmatism and proportion of vertical orientation of steep axis was lower than previous estimates. The IOLMaster 700 appears capable of providing enhanced biometric measurement for individualized surgical planning. [J Refract Surg. 2018;34(5):331-336.]. Copyright 2018, SLACK Incorporated.

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Year:  2018        PMID: 29738589     DOI: 10.3928/1081597X-20180214-02

Source DB:  PubMed          Journal:  J Refract Surg        ISSN: 1081-597X            Impact factor:   3.573


  7 in total

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2.  Lower refractive prediction accuracy of total keratometry using intraocular lens formulas loaded onto a swept-source optical biometer.

Authors:  Yukitaka Danjo; Reina Ohji; Sayo Maeno
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3.  Comparison of Barrett Toric Calculations Using Measured and Predicted Posterior Corneal Astigmatism in Cataract Surgery Patients.

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4.  Prediction accuracy of standard and total keratometry by swept-source optical biometer for multifocal intraocular lens power calculation.

Authors:  Hun Lee; Jae Lim Chung; Young Jun Kim; Jae Yong Kim; Hungwon Tchah
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Review 5.  Application of artificial intelligence in cataract management: current and future directions.

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6.  Acquisition Time for Swept-Source Optical Biometry Plus Corneal Power Measurement During Cataract Evaluation.

Authors:  Ramón Ruiz-Mesa; Maria Ruiz-Santos; Julia Blanch-Ruiz; Ana Jiménez-Nieto
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Review 7.  Toric intraocular lenses: Evidence-based use.

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  7 in total

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