IP Library › Granted Patent US 10,716,705
Granted Patent B2
US 10,716,705 · App. 14/968,618 · Granted Jul 21, 2020

Systems and methods for femtosecond laser photorefractive keratectomy

Inventor: Hong Fu (Pleasanton, CA)
Assignee: AMO Development, LLC
A61F9/00814A61F9/009A61F9/00808A61F9/00827A61F9/00836A61F9/00838A61F2009/00872A61F2009/00895A61F2009/00897
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Quick Facts
Patent No.
US 10,716,705
App. No.
14/968,618
Granted
Jul 21, 2020
Kind
B2
Abstract

Embodiments of this invention generally relate to ophthalmic laser procedures and, more particularly, to systems and methods for photorefractive keratectomy. In an embodiment, an ophthalmic surgical laser system comprises a laser source generating a pulsed laser beam and a laser delivery system delivering the pulsed laser beam to a cornea of an eye. A patient interface couples to and constrains the eye relative to the laser delivery system. A controller controls the laser delivery system to perform an anterior surface volume dissection on the cornea.

Claims (50)

1. An ophthalmic surgical laser system comprising:

a laser source generating a pulsed laser beam;

a laser delivery system delivering the pulsed laser beam to a cornea of an eye;

a patient interface coupling to and constraining the eye relative to the laser delivery system, wherein a surface of the patient interface in contact with the cornea is curved; and

a controller controlling the laser delivery system to perform an anterior surface volume dissection on the cornea by forming a cutting surface in the cornea that dissects a volume of cornea tissue that contains an anterior corneal surface, wherein a radius of curvature R of the cutting surface is:

R

=

[

1

R

PI

-

Δ

⁢

⁢

D

(

n

-

1

)

]

-

1

where n is a refractive index of the cornea, ΔD a predetermined value of vision correction, and R PI is a radius of curvature of surface of the patient interface in contact with the cornea.

2. The ophthalmic surgical laser system of claim 1 , wherein the laser source is a femtosecond laser.

3. The ophthalmic surgical laser system of claim 1 , wherein the laser source is a UV light laser providing 355 nm laser light beam.

4. The ophthalmic surgical laser system of claim 1 , wherein the laser delivery system scans the cornea by point-to-point scanning.

5. The ophthalmic surgical laser system of claim 1 , wherein the laser delivery system scans the cornea by fast scan line scanning.

6. An ophthalmic surgical laser system comprising:

a laser source generating a pulsed laser beam;

a laser delivery system delivering the pulsed laser beam to a cornea of an eye;

a patient interface coupling to and constraining the eye relative to the laser delivery system; and

a controller controlling the laser delivery system to perform an anterior surface volume dissection on the cornea by forming a cutting surface in the cornea that dissects a volume of cornea tissue that contains an anterior corneal surface,

wherein a depth of focus of the pulsed laser beam is under 10 μm and is given by:

Δ

=

0.905

·

λ

(

NA

)

2

where Δ is the depth of focus in cornea, λ is the laser wavelength, and NA is the numerical aperture of the focusing beam.

7. The ophthalmic surgical laser system of claim 6 , wherein the laser source is a femtosecond laser.

8. The ophthalmic surgical laser system of claim 6 , wherein the laser source is a UV light laser providing 355 nm laser light beam.

9. The ophthalmic surgical laser system of claim 6 , wherein a surface of the patient interface in contact with the cornea is curved.

10. The ophthalmic surgical laser system of claim 6 , wherein the laser delivery system scans the cornea by point-to-point scanning.

11. The ophthalmic surgical laser system of claim 6 , wherein the laser delivery system scans the cornea by fast scan line scanning.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2020
From: FU, HONG
To: AMO DEVELOPMENT, LLC
Reel/Frame 052932/0833 →
Continuity (2)
Provisional Application 62121241 · Feb 26, 2015
Related Publication 20160250074A1 · Sep 1, 2016
Cited By (1)
US 12,216,272