IL184792A

Apodized diffractive iol with frustrated diffractive region

Abstract

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IL184792A, drawing sheet 1
Sheet 1 of 6

Term

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  1. Priority
  2. Filed
  3. Published
  4. Today

36 claims: 9 independent, 27 dependent

  1. 1
    An ophthalmic lens, comprising an optic having an anterior surface and a posterior surface, said optic providing a far focus, a diffractive structure comprising a plurality of diffractive zones disposed on at least one of said surfaces so as to provide a near focus, wherein each zone is separated from an adjacent zone by a zone boundary imparting an optical phase delay to incident light, wherein at least, two consecutive zone boundaries are configured such that a difference between their associated phase delays for at least one wavelength is greater than about 1/20 wavelength so as to direct a portion of the incident light to a location between said near and far foci.
  2. 14
    An ophthalmic lens, comprising an optic having an anterior surface and a posterior surface, a diffractive structure comprising a plurality of diffractive zones disposed on at !!east one of said surfaces, each zone being separated from an adjacent zone by a zone boundary, said optic providing a far focus corresponding to a zeroth diffraction order of said ;diffractive zones and a near focus corresponding to a 1 st diffraction order of said diffractive zones, wherein said zone boundaries are characterized by a plurality of nonuniform step heights generating non-uniform phase delays adapted to direct a portion of incident light to a location between said near and far foci so as to enhance intermediate vision.
  3. 19
    An ophthalmic lens, comprising an optic having an anterior surface and a posterior surface, said optic providing a far-focus optical power, a diffractive structure comprising a plurality of diffractive zones disposed on at least one of said surfaces for providing a near-focus optical power, wherein at least two of said diffractive zones exhibit sufficiently different surface curvatures so as to cause a portion of light incident on said optic to be directed to an intermediate location between said near and far foci for enhancing intermediate vision.
  4. 25
    An ophthalmic lens, comprising an optic having an anterior surface and a posterior surface, said optic providing a far focus, a diffractive structure comprising a plurality of diffractive zones disposed on at least one of said surfaces for providing a near focus, wherein a surface of at least one of said diffractive zones exhibits an asphericity such that said diffractive structure directs at least a portion of incident light to an intermediate location between said near and far foci.
  5. 30
    An ophthalmic lens, comprising an optic having an anterior optical surface and a posterior optical surface, said ! optic providing a far focus, a plurality of annular diffractive zones disposed on one of said surfaces about an optical axis of said optic so as to provide a near focus, wherein at least one of said zones (i) has a boundary with a radial location defined by the following relation:r?=r*+2ttf wherein י i denotes the zone number (i=0 denotes the central zone), λ denotes a design wavelength, f denotes a focal length of the near focus, and r 0 denotes the radius of the central zone, and wherein at least another zone has a boundary with a radial location that differs I sufficiently, from that defined by the above relation for a putative respective zone so as to direct a portion of incident light to an intermediate location between said far and near foci.
  6. 31
    The lens of|claim 30, wherein the radial location of said at least another zone differs from that defined by said relation by a factor in a range of about 20% to about 50%.
  7. 32
    The lens of'claim 30, wherein λ is in a range of about 400 nm to about 700 nm.
  8. 34
    An ophthalmic lens, comprising an optic having an anterior optical surface and a posterior optical surface, said optic providing a far focus, a plurality of diffractive zones disposed on at least one of said surfaces to provide a near focus, wherein said zones comprise a central zone having a radius that is sufficiently different from γ/Σ/, where λ denotes a design wavelength and f denotes a focal length of the near focus, such that at least a portion of incident light is directed to an intermediate location between said near and far foci.
  9. 36
    The lens of!claim 34, wherein said near focus corresponds to an add power in a range of about 2 D to about 4 D