EP3552536A1

System and method for measuring corneal topography

Abstract

A system measures a corneal topography of an eye. The system includes a group of first light sources arranged around a central axis, the group being separated from the axis by a radial distance defining an aperture in the group; a plurality of second light sources; a detector array; and an optical system adapted to provide light from the second light sources through the aperture to a cornea of an eye, and to provide images of the first light sources and images of the second light sources from the cornea, through the aperture, to the detector array. The optical system includes an optical element having a focal length, f. The second light sources are disposed to be in an optical path approximately one focal length,/, away from the optical element.

EP3552536A1, drawing sheet 1
Sheet 1 of 63

Term

1.8 yearsto projected expiry

Projected expiry 27 June 2028, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

5 claims: 3 independent, 2 dependent

  1. 1
    A method of determining a vertex alignment error for a corneal topographer comprising central light sources to sample a central region of the corneal surface, and a Placido-type light source array to sample an outer region of the corneal surface outside the central area, the method comprising:measuring, using the central light sources, a curvature in an outer ring of the central area of the corneal surface, adjacent the outer region of the corneal surface;measuring reflection locations from the cornea of an innermost set of light sources of the Placido-type light source array;using the measured curvature of the outer ring of the central area of the corneal surface and the measured reflection locations from the cornea of the innermost set of light sources of the Placido-type light source array to calculate a vertex alignment error for each of the innermost set of light sources of the Placido-type light source;and determining the vertex alignment error for the corneal topographer from the calculated vertex alignment error for each of the innermost set of light sources of the Placido-type light source.
  2. 4
    The method of any preceding claim, wherein calculating the vertex alignment error, for each of the light sources of the Placido-type light source, comprises determining the difference between (1) the axial distance from the light source to its reflection location and (2) the sum of the axial distance from the light source to the design corneal vertex plane and the surface sag at the reflection location.
  3. 5
    The method of any preceding claim wherein the vertex alignment error for the corneal topographer is determined by averaging the calculated vertex alignment errors for the innermost set of light sources of the Placido-type light source.