article Open AccessTop 10% cited
Changes in Collagen Orientation and Distribution in Keratoconus Corneas
Investigative Ophthalmology & Visual Science · 2005 · Vol. 46(6) · pp. 1948–1948
Keith M. Meek✉(Cardiff University)Stephen J. Tuft(Moorfields Eye Hospital)Yifei Huang(Beijing Great Wall Hospital)Paulvinder S. Gill(Cardiff University)Sally Hayes(Cardiff University)Richard Newton(Cardiff University)Anthony J. Bron(University of Oxford)
Abstract
The development of keratoconus involves a high degree of inter- and probably intralamellar displacement and slippage that leads to thinning of the central cornea and associated changes in corneal curvature. This slippage may be promoted by a loss of cohesive forces and mechanical failure in regions where lamellae bifurcate.
Corneal surgery and disordersCorneal Surgery and TreatmentsOcular Surface and Contact LensKeratoconusCorneaAnatomyCurvatureOrientation (vector space)Materials scienceChemistryBiophysicsOpticsBiology
MeSH terms
AdultAgedAged, 80 and overCollagenCorneal StromaHumansKeratoconusMaleMiddle AgedX-Ray Diffraction
Citations
501
FWCI
6.05
field-weighted impact
References
75
Percentile
96%
vs. same field & year
Citations per year
References
Histology of the Human Eye.
Archives of Ophthalmology · 1972 · 800 citations
The structure and transparency of the cornea
The Journal of Physiology · 1957 · 1,107 citations
Riboflavin/ultraviolet-a–induced collagen crosslinking for the treatment of keratoconus
American Journal of Ophthalmology · 2003 · 2,905 citations
The specific architecture of the anterior stroma accounts for maintenance of corneal curvature
British Journal of Ophthalmology · 2001 · 418 citations
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