Nova Patents
EP0308077A2

Synthetic intracorneal lens.

Abstract

A lens (I,I',I") for implantation into the cornea (C) of the eye for providing correction for myopia and myopia with accompanying astigmatism wherein a corneal cap (Cp) section is removed and an implant bed is created to receive the intracorneal lens (I, I', I"). The intracorneal lens (I, I', I") is formed of a hydrogel type material or other material highly compatible with corneal physiology. In the range of lens powers of approximately -1.0 diopters to -30.0 diopters, the posterior surface (15) radius of curvature (PCCR) conforms to the receiving surface (S3) of the lamellar bed (LB) of the cornea (C) and the anterior surface (10) has the radius of curvature (ACCR) necessary to provide the desired lens power for achieving the desired change in the refractive power of the cornea (C). The lens (I, I', I") includes a peripheral transitional zone (20) to join the anterior surface (10) and posterior surface (15) to allow the lens (I, I', I") to be implanted onto the corneal bed and to allow for a smooth overlay of the replaced corneal cap (Cp) section.

EP0308077A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 19 August 2008, 18.1 years ago.

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

38 claims: 24 independent, 14 dependent

  1. 1
    A lens for implantation into the cornea of the eye for correction of myopia, wherein a corneal cap section is removed and an implant bed is created, comprising:said lens (I;I′;I˝ being formed of a material which is compatible with the corneal physiology of the human eye;said lens being a single-piece member having an anterior surface (10), a posterior surface (15) and a peripheral transition zone (20) joining said anterior and posterior surfaces;said lens having an overall configuration which is circular as viewed from a central axis of the lens and being generally convex in its anterior surface and generally concave in its posterior surface as viewed in a cross section taken along said central axis;said peripheral transition zone including an annular surface (25;30;35) which cooperates to join said anterior surface (10) and said posterior surface (15) in order to allow said lens to be implanted onto the corneal bed and to allow a smooth overlay of the replaced corneal cap section.
  2. 4
    The intracorneal lens of any one of claims 1 to 3, comprising:said posterior surface including a toric surface for the correction of myopia with accompanying astigmatism.
  3. 5
    The intracorneal lens of any one of claims 1 to 4, wherein said peripheral transition zone further includes:a second annular surface (30) which cooperates with said first-mentioned annular surface (25) to join said anterior and posterior surfaces in order to allow said lens to be implanted onto the corneal bed and to allow the smooth overlay of the replaced corneal section.
  4. 7
    The intracorneal lens of any one of claims 1 to 6, wherein said annular surface includes:a first annular surface (25) formed of an annular planar surface which is parallel to a plane perpendicular to said central axis, said annular planar surface joining said posterior surface to extend radially outwardly therefrom.
  5. 11
    The intracorneal lens of any one of claims 1 to 10, wherein:said corneal cap section is removed to a depth of approximately 0.3 mm, which is the distance of the receiving surface of the lamellar bed from the corneal surface prior to the removal of the corneal section, and said posterior surface has a radius of curvature which conforms to the radius of curvature of the receiving surface of the lamellar bed.
  6. 12
    The intracorneal lens of any one of claims 1 to 10, wherein:said corneal cap section is removed to a depth in the range of 0.2 to 0.4 mm, which is the distance of the receiving surface of the lamellar bed from the corneal surface prior to the removal of the corneal section, and said posterior surface has a radius of curvature substantially equal to the radius of curvature of the receiving surface of the lamellar bed.
  7. 13
    The intracorneal lens of any one of claims 1 to 12, wherein:said posterior surface corresponds to that for a patient in which the corneal power was approximately 43 diopters and the anterior corneal cap was approximately 0.3 mm and said anterior surface radius of curvature is determinative of the desired refractive power of the lens.
  8. 14
    The intracorneal lens of any one of claims 1 to 12, wherein:said posterior surface conforms to the lamellar bed of patients with preoperative keratometer readings in the range of 38 to 51 diopters and the anterior corneal cap was approximately 0.2 to 0.4 mm and said anterior surface radius of curvature is determinative of the desired refractive power of the lens.
  9. 16
    The intracorneal lens of any one of claims 1 to 15, wherein:said posterior surface has a radius of curvature of approximately 7.549 millimeters.
  10. 17
    The intracorneal lens of any one of claims 1 to 16, wherein:said posterior surface has a radius of curvature which corresponds to the radius of curvature of the corneal lamellar bed after removal of the corneal cap of 0.2 to 0.4 mm thickness for patients with keratometer readings in the range of 38 to 51 diopters.
  11. 18
    The intracorneal lens of any one of claims 1 to 17, wherein:the intracorneal lens has an overall outside diameter of approximately 6.750 millimeters.
  12. 19
    The intracorneal lens of any one of claims 1 to 17, wherein:the intracorneal lens has an overall outside diameter in the range of 5.0 to 8.00 mm.
  13. 20
    The intracorneal lens of any one of claims 1 to 19, wherein:the distance between said anterior and posterior surfaces through the central axis of the lens is approximately 0.100 millimeters.
  14. 21
    The intracorneal lens of any one of claims 1 to 19, wherein:the distance between said anterior and posterior surfaces through the central axis of the lens is in the range of 0.05 to .20 mm.
  15. 22
    The intracorneal lens of claims 6, wherein:the width of said third annular surface (35) varies according to the radius of curvature of said anterior surface of said lens.
  16. 24
    An intracorneal lens for implantation into the cornea of the eye for providing correction of myopia wherein a corneal cap section is removed to create an implant bed to receive said lens, comprising:said lens (I,I′,I˝) being a single piece member having a generally spherical anterior surface (10) and a generally spherical posterior surface (15) and a peripheral transitional zone (20) joining said anterior and posterior surfaces;said lens having a posterior central curve radius of curvature of approximately 7.549 mm;said anterior central curve radius of curvature for said anterior surface being in the range of 7.766 - 11.162 mm to provide a diopter power to said lens in the range of -1.0 to -15.0 diopters.
  17. 25
    An intracorneal lens for implantation into the cornea of the eye for providing correction of myopia wherein a corneal cap section is removed to create an implant bed to receive said lens, comprising:said lens (I,I′,I˝) being a single piece member having an anterior surface (10), a posterior surface (15) and a peripheral transition zone (20) joining said anterior and posterior surfaces;said lens having a posterior central curve radius of curvature for said posterior surface of approximately 7.549 mm;said anterior central curve radius of curvature for said anterior surface is in the range of approximately 7.766 to approximately 20.589 mm to provide a diopter power to said lens in the range of -1.0 to -30.0 diopters.
  18. 26
    The intracorneal lens of any one of claims 1 to 25, wherein:said material for said lens is a hydrogel.
  19. 27
    A method of manufacture of an intracorneal lens for correction of myopic conditions, comprising:forming said lens of a material which is compatible with the corneal physiology of the human eye;forming said lens of a single piece member having an anterior surface (10) and a posterior surface (15) and a peripheral transition zone (20) joining said anterior and posterior surfaces;forming said lens such that said lens has an overall configuration which is circular as viewed from a central axis of the lens and wherein said lens is generally convex in its anterior surface and generally concave in its posterior surface, as viewed in a cross-section taken along a central axis;and forming said lens in a range of lens powers of approximately -1.0 diopters to -30.0 diopters wherein said posterior surface has the required radius of curvature for conformity onto the receiving surface of the lamellar bed of the cornea and said anterior surface has the radius of curvature necessary to provide the desired lens power for achieving the desired change in refractive power of the cornea.
  20. 30
    The method set forth in any one of claims 27 to 29, including:forming said posterior surface (15) in a toric configuration for the correction of myopia with accompanying astigmatism.
  21. 31
    The method set forth in any one of claims 27 to 30, including:forming said posterior surface (15) of a radius of curvature that corresponds to the radius of curvature for a patient in which the corneal power is in the range of 38 to 51 diopters and the anterior corneal cap which was removed by surgical procedure was approximately 0.3 mm in thickness and said anterior radius of curvature is determinative of the refractive power of the cornea with said lens implanted.
  22. 32
    The intracorneal lens of any one of claims 27 to 31, wherein:said posterior surface (15) corresponds to that for a patient in which the corneal power was approximately 43 diopters and the anterior corneal cap which was removed by surgical procedure was approximately in the range of 0.2 to 0.4 mm and said anterior surface radius of curvature is determinative of the refractive power of the cornea with said lens implanted.
  23. 33
    The method set forth in any one of claims 27 to 32, further including:forming a peripheral transition zone (20) including an annular surface (25;30;35) which cooperates to join said anterior surface (10) and posterior surfaces (15) in order to allow said lens to be implanted into the corneal bed and to allow a smooth overlay of the replaced corneal cap section.
  24. 36
    The method of any one of claims 27 to 35, including:forming a peripheral transitional zone (20) joining said anterior and posterior lens surfaces by forming a first annular surface (25) which is in a plane perpendicular to the central axis of the lens and which extends from said posterior surface to the outer rim of the lens.
Independent claims24