US2002101564A1PendingUtilityA1

Artificial lens including a lens system having eccentric axes for use in an eye having an enlarged pupil and method

Priority: Dec 8, 1994Filed: Mar 19, 2002Published: Aug 1, 2002
Est. expiryDec 8, 2014(expired)· nominal 20-yr term from priority
A61F 2/1648A61F 2/1613A61F 2/1618
44
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

An artificial lens including a lens system having eccentric axes for in an eye having a macula and an enlarged natural pupil is shown. The artificial lens comprises a first optical lens system and a second optical lens system. The principal axis of each optical lens system is eccentric to each other and the distance between each principal axis is selected to enable the first optical lens system and the second optical lens system to be operable within the enlarged pupil. The lens system of the artificial lens system directs light rays from each image of each lens of the first optical lens system and second optical lens system onto a fovea centralis of the macula of an eye. In the preferred embodiment, a prism having a preselected diopter power is positioned on a selected surface of one of the first optical lens system and second optical lens system for directing light rays from an object onto a fovea centralis of the macula of an eye. A contact lens having an eccentric optical system is also shown.

Claims

exact text as granted — not AI-modified
What is claimed is:  
     
         1 . An artificial lens system for producing multiple images of an object for an eye having a natural pupil and a macula, said artificial lens system comprising 
 at least two lenses which are supported in an eye so as to be situated eccentrically from one another and wherein one of said at least one two lenses is adapted to be positioned in the natural pupil and another of said two lenses is adapted to be positioned in an opening formed in the natural pupil such that an optical axis of the one lens is eccentric to an optical axis of another lens for directing light rays from images respectively produced by said two lenses lenses onto the macular of an eye.    
     
     
         2 . The artificial lens system of  claim 1  wherein said at least two lenses each have a proximal edge which are positioned adjacent to each other and wherein one of said at least two lenses includes a first prism.  
     
     
         3 . The artificial lens system of  claim 2  wherein another of said at least two lenses includes a second prism.  
     
     
         4 . The artificial lens system of  claim 1  wherein said at least two lens each have a proximal edge which are positioned adjacent to each other and further comprising 
 a first prism having a base and a wedge-shaped edge and wherein said first prism is positioned with its wedge-shaped edge located adjacent the proximal edge of said one of said at least two lenses.  
 
     
     
         5 . The artificial lens system of  claim 4  comprising a second prism having a base and a wedge-shaped edge and wherein said second prism is positioned with its wedge-shaped edge located adjacent the proximal edge of said another of said at least two lenses.  
     
     
         6 . The artificial lens system of  claim 1  wherein the natural pupil has a known geometrical dimension and wherein distance between each principal axis is selected to be about at least equal to the known geometrical dimension..  
     
     
         7 . The artificial lens system of  claim 6  the artificial lens is adapted to produce disparate near and distant macular images.  
     
     
         8 . An artificial lens adapted for use in an eye having a macula and an opening formed in a natural pupil comprising 
 a first optical lens system and a second optical lens system wherein the principal axis of each optical lens system is eccentric to each other and the distance between each principal axis is selected to enable at least one of the first optical lens system and a second optical lens system to be situated within an opening formed in a natural pupil for directing light rays from each image of each lens onto a macula of an eye.    
     
     
         9 . The artificial lens of  claim 8  wherein the natural pupil has a known geometrical dimension and wherein distance between each principal axis is selected to be about at least equal to the known geometrical dimension.  
     
     
         10 . The artificial lens of  claim 8  wherein the artificial lens is adapted to produce disparate near and distant macular images.  
     
     
         11 . The artificial lens of  claim 8  wherein the first optical lens system includes 
 a first lens having a predetermined diopter power for receiving light rays from a near object.  
 
     
     
         12 . The artificial lens of  claim 11  wherein said first lens includes 
 a first prism having a preselected diopter power, said first prism being positioned on a selected surface of said first lens for directing a portion of light rays from the near object onto a macula of an eye and the light rays of a different object superior of the macula.  
 
     
     
         13 . The artificial lens of  claim 12  wherein said second optical lens system includes a second lens and wherein said first lens and said second lens each have has a proximal edge and wherein said first prism has a base and a wedge-shaped edge and wherein said first prism is positioned with said wedge-shaped edge located adjacent the proximal edge of said first lens.  
     
     
         14 . The artificial lens of  claim 13  wherein said second lens system includes a second prism and wherein said second prism has a base and a wedge-shaped edge and wherein said second prism is positioned with said wedge shaped edge located adjacent the proximal edge of said second lens.  
     
     
         15 . The artificial lens of  claim 8  wherein said artificial lens includes 
 a first lens having a predetermined diopter power for receiving and directing light rays from an object onto a macula of an eye; and  
 a second lens having a predetermined diopter power positioned inferior of said first lens for receiving and directing light rays from the same object onto a macula of an eye.  
 
     
     
         16 . The artificial lens of  claim 15  further including 
 a prism having a predetermined diopter power, said prism being positioned on a selected surface of said first lens for directing selected paracentral light rays from a near object onto a macula of an eye and central rays directed superior to the macula.  
 
     
     
         17 . The artificial lens of  claim 16  further including 
 a second prism having a predetermined diopter power, said second prism being positioned on a selected surface of said second lens for directing selected paracentral light rays from a distant object onto a macula of an eye with the central light rays inferior to the macula.  
 
     
     
         18 . The artificial lens of  claim 8  comprising 
 a first extended objective optical lens for receiving and passing light rays from at least one of a near object and distant object.  
 
     
     
         19 . The artificial lens of  claim 18  further comprising 
 a second extended objective optical lens for receiving and passing light rays from the other of a near object and a distant object.  
 
     
     
         20 . The artificial lens system of  claim 18  wherein said extended objective optical lens has one surface in the form of a wide angle convex lens and an opposed surface in the form of a posterior end, said artificial lens further comprising 
 a prism having a selected diopter power, said prism being positioned on the posterior end of said extended objective optical lens for directing paracentral light rays from at least one of a near object and far object onto a macula of an eye.  
 
     
     
         21 . The artificial lens system of  claim 19  wherein each of said first extended objective optical lens and said second extended objective optical lens has a wide angle convex surface and an opposed posterior end, said artificial lens further comprising 
 a first prism having a preselected diopter power, said first prism being positioned on the posterior end of said first extended objective optical lens for directing paracentral light rays from a near object onto the macula, and  
 a second prism having a preselected diopter power, said second prism being positioned on the posterior end of said second extended objective lens for directing paracentral light rays from a distant object onto a macula of an eye.  
 
     
     
         22 . The artificial lens of  claim 15  further comprising 
 a third lens positioned between said first lens and said second lens for receiving and passing light rays from an object at intermediate range onto the macula.  
 
     
     
         23 . An artificial lens adapted for use in an eye having an opening formed in a natural pupil comprising 
 at least a first lens system and a second lens system having eccentric axes wherein at least one lens system is adapted to be situated in an opening formed in the natural pupil of an eye for producing disparate near and distant macular images.    
     
     
         24 . The artificial lens of  claim 23  wherein one of said first lens system and said second lens system includes 
 a first lens having a predetermined diopter power for receiving light rays from a near object; and  
 a first prism having a preselected diopter power, said first prism being positioned on a selected surface of said first lens for directing paracentral light rays from a near object onto a macula of an eye and central light rays from a near object superior of the macula.  
 
     
     
         25 . The artificial lens of  claim 24  wherein the other of said first lens system and said second lens system further comprising 
 a second lens having a predetermined diopter power positioned inferior of said first lens for receiving light rays from a distant object; and  
 a second prism having a preselected diopter power, said second prism being positioned on a selected surface of said second lens for directing paracentral light rays from a distant object onto a macula of an eye and the central light rays from a distant object inferior of the macula.  
 
     
     
         26 . The artificial lens of  claim 25  wherein: 
 said first lens has a predetermined diopter power for receiving light rays from a near object, said first lens defining an anterior lens surface and a posterior lens surface;  
 a prism having a preselected diopter power, said prism being positioned contiguous of the posterior lens surface of said first lens for directing paracentral light rays from a near object onto a macula of an eye and the central light rays from a near object superior of the macula;  
 said second lens being positioned inferior to the first lens for receiving light rays from a distant object, said second lens defining a second anterior lens surface and a second posterior lens surface; and  
 a second prism having a second preselected diopter power, said prism being positioned contiguous the second posterior lens surface of said second lens for directing paracentral light rays from a distant object onto the macula of the eye and central light rays from a distant object inferior of the macula.  
 
     
     
         27 . The artificial lens of  claim 24  wherein said first lens and said first prism are affixed to each other to define a corneal overlay lens adapted to be affixed onto the cornea of an eye.  
     
     
         28 . The artificial lens of  claim 24  wherein said first lens and said first prism are affixed to each other to define a cornealstroma lens adapted to be implanted into a cornea of an eye.  
     
     
         29 . The artificial lens of  claim 24  wherein said first lens and said first prism affixed to each other and said second lens and said second prism affixed to each other to define a corneal overlay lens adapted to be affixed onto the cornea of an eye.  
     
     
         30 . The artificial lens of  claim 24  wherein said first lens and said first prism are affixed to each other and said second lens and said second prism are affixed to each other to define an cornealstroma lens adapted to be implanted into a cornea of an eye.  
     
     
         31 . The artificial lens of  claim 24  wherein said first lens and said first prism are affixed to each other and said second lens and said second prism are affixed to each other to define a lens body of an intraocular lens.  
     
     
         32 . The artificial lens of  claim 31  further comprising 
 resilient support means operatively connected to said lens body to define an intraocular lens.  
 
     
     
         33 . The artificial lens of  claim 32  wherein said lens body has an outer peripheral surface for supporting said resilient support means.  
     
     
         34 . The artificial lens of  claim 33  wherein resilient support means comprises two haptic members equally spaced around said outer peripheral surface and in a plane substantially coplanar with the lens body.  
     
     
         35 . The artificial lens of  claim 32  wherein said resilient support means comprises three haptic members equally spaced around said outer peripheral surface and in a plane substantially coplanar with the lens body.  
     
     
         36 . The artificial lens of  claim 24  wherein each of said first lens and said second lens has a proximal edge which are positioned adjacent to each other and wherein said first prism is positioned with its wedge-shaped edge located adjacent the proximal edge of said first lens and said second lens.  
     
     
         37 . The artificial lens of  claim 36  comprising 
 a second prism is having a base and wedge-shaped edge and wherein said wherein said second prism is positioned with its wedge-shaped edge located adjacent the proximal edge of the other of said first lens and said second lens.  
 
     
     
         38 . An artificial lens adapted to be located in an opening formed in a natural pupil of an eye wherein the eye has a macula, said artificial lens comprising 
 a first lens system for receiving and directing light rays from a near object onto the fovea of the macula; and    a second lens systems positioned inferior in an eccentric arrangement to the first lens system for receiving and directing light rays from a distant object onto the macula;    said first lens system and said second lens system each having a principal axis which are eccentric to each other and the distance therebetween is selected to situate at least one of the first lens system and the second lens system within an opening formed in a natural pupil for directing light rays from each image of each lens onto a macula of an eye.    
     
     
         39 . The artificial lens of  claim 38  wherein said distance between said principal axes is about equal to the geometric dimension of the natural pupil.  
     
     
         40 . The artificial lens of  claim 38  wherein said eye includes an anterior chamber and said first lens system and said second lens system include an extended objective plus lens adapted to extend into the anterior chamber of the eye.  
     
     
         41 . The artificial lens of  claim 40  wherein each of said extended objective lens has a posterior end having a lens and a prism affixed hereto and positioned to direct paracentral light rays onto the macula of the eye and central light rays at least one of superior and inferior of the macula.  
     
     
         42 . An optical lens for a human eye having a macula and a natural pupil and wherein an opening is formed in the natural pupil comprising 
 a lens body having an anterior surface and a posterior surface, said lens body including at least two eccentrically arranged lens systems wherein the principal axis of each lens system is eccentric to each other and the distance between each principal axis is selected to enable at least one of the at least two lens systems to be situated within an opening formed in a natural pupil for directing light rays from each image of each lens onto a macula of an eye in a manner to obtain an optical effect for substitution of the loss of accommodation of an eye.    
     
     
         43 . The optical lens of  claim 42  wherein at least one of said system includes a prism for passing different light rays from an object.  
     
     
         44 . The optical lens of  claim 43  wherein the prism includes a first prism section and a second prism section and wherein the first prism section is adapted to direct the selected paracentral light rays from each object onto the macula of an eye and central light rays from a different object to at least one of a preselected location superior to the macula and a preselected location inferior to the macula.  
     
     
         45 . The optical lens of  claim 42  wherein the lens body has a central area and an eccentric superior area and wherein the prism is located in the superior area of the lens body.  
     
     
         46 . The optical lens of  claim 45  wherein the central area of the lens body has a principal axis and wherein a second prism section is located on the principal axis of the lens body. from each of different objects onto the macula.  
     
     
         47 . A contact lens comprising 
 a lens body, said lens body having a first optical lens and a second optical lens wherein each of said first optical lens system and said second optical lens system having a principal axis which are eccentric to each other and at least one of the first optical lens system and the second optical lens system is adapted to be situated within an opening formed in a natural pupil for directing light rays from each image of each lens onto a macula of an eye.    
     
     
         48 . The contact lens of  claim 47  wherein the lens body has formed thereon a slightly raised, generally triangular shaped anterior surface.  
     
     
         49 . The contact lens of  claim 47  wherein the lens body has formed thereon a slightly raised, generally circular shaped anterior surface.  
     
     
         50 . The contact lens of  claim 47  wherein the lens body has a bottom surface shaped to provide a guiding surface for the lower eyelid to enable an eye having the contact lens to be rotated downward placing one of the lens system under a bottom eyelid of an eye.  
     
     
         51 . The contact lens of  claim 48  wherein the lens body has bottom section and includes a pair of spaced enlarged bottom sections to weight the bottom thereof so as to keep the lens system situated within the opening formed in the natural pupil.  
     
     
         52 . The contact lens of claim  50  wherein the lens body has a bottom surface shaped to provide a guiding surface for the lower eyelid to enable an eye having the contact lens to be rotated downward placing one of the lens system under a bottom eyelid of an eye.

Join the waitlist — get patent alerts

Track US2002101564A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.