Literature DB >> 25666571

[Corneal biomechanics: Corvis® ST parameters after LASIK].

A Frings1, S J Linke2, E L Bauer2, V Druchkiv2, T Katz2, J Steinberg2.   

Abstract

BACKGROUND: Corneal refractive surgery alters the biomechanical properties of the cornea.
OBJECTIVES: This study was initiated to evaluate corneal biomechanical parameters after LASIK using a Corvis® ST tonometer (CST).
METHODS: This retrospective study included 51 eyes of 32 myopic patients. All CST measurements were performed 1 day before surgery and at the 1-month follow-up examination. The LASIK procedure included mechanical flap preparation using a Moria SBK microkeratome and an Allegretto excimer laser platform.
RESULTS: Statistically significant differences were observed for mean second applanation length, mean first and second deflection lengths, mean first and second deflection amplitudes, peak distance and radius of curvature. Statistically significant positive correlations were found between the change (Δ) in radius of curvature and Δ in manifest refraction spherical equivalent (MRSE), between the ablation depth and the Δ in intraocular pressure. Applying multiple regression models also revealed statistically significant differences in parameters obtained by CST measurements.
CONCLUSION: Several CST parameters were statistically significantly altered by LASIK thereby indicating that flap creation, ablation or both, significantly change the ability of the cornea to absorb or dissipate energy.

Entities:  

Keywords:  Ablation; Cornea; Corneal flap; Corneal refractive surgery; Corneal rigidity

Mesh:

Year:  2015        PMID: 25666571     DOI: 10.1007/s00347-015-3235-0

Source DB:  PubMed          Journal:  Ophthalmologe        ISSN: 0941-293X            Impact factor:   1.059


  14 in total

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3.  Assessment of the epithelium's contribution to corneal biomechanics.

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4.  Ocular residual astigmatism: effects of demographic and ocular parameters in myopic laser in situ keratomileusis.

Authors:  Andreas Frings; Toam Katz; Johannes Steinberg; Vasyl Druchkiv; Gisbert Richard; Stephan J Linke
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5.  Corneal biomechanics as a function of intraocular pressure and pachymetry by dynamic infrared signal and Scheimpflug imaging analysis in normal eyes.

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Review 6.  On the biomechanical properties of the cornea with particular reference to refractive surgery.

Authors:  J O Hjortdal
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7.  Effects of age on corneal deformation by non-contact tonometry integrated with an ultra-high-speed (UHS) Scheimpflug camera.

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8.  Depth-dependent cohesive tensile strength in human donor corneas: implications for refractive surgery.

Authors:  J Bradley Randleman; Daniel G Dawson; Hans E Grossniklaus; Bernard E McCarey; Henry F Edelhauser
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9.  Flap-induced and laser-induced ocular aberrations in a two-step LASIK procedure.

Authors:  Samra Waheed; Maria Regina Chalita; Meng Xu; Ronald R Krueger
Journal:  J Refract Surg       Date:  2005 Jul-Aug       Impact factor: 3.573

10.  Biomechanics of the cornea and wavefront-guided laser refractive surgery.

Authors:  Cynthia Roberts
Journal:  J Refract Surg       Date:  2002 Sep-Oct       Impact factor: 3.573

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Review 1.  Corneal Vibrations during Intraocular Pressure Measurement with an Air-Puff Method.

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