Claims
- 1. A laser system for sculpting a region of a cornea to effect a predetermined change in shape, the system comprising:
at least one laser for generating a plurality of laser beams suitable for ablation of the cornea; and an optical train optically coupled to the beams so as to direct the plurality of optical beams toward differing areas of the cornea, the differing areas defining an ablation pattern, the optical train comprising an adjustment mechanism for altering the ablation pattern.
- 2. A laser system for sculpting a region of a cornea to effect a predetermined change in shape, the system comprising:
a laser for generating a first laser beam suitable for ablation of the cornea; an optical element optically coupled to the first laser beam, the optical element separating the first laser beam into a plurality of laser beams; and an optical train optically coupled to the beams so as to direct the plurality of optical beams simultaneously toward differing areas of the cornea, the differing areas defining an ablation pattern, the optical train comprising an adjustment mechanism for altering the ablation pattern during an ablation procedure.
- 3. The laser system of claim 2 further comprising an aperture between the laser and the optical element, wherein the aperture is a variable aperture so as to change a dimension of each of the beams.
- 4. The laser system of claim 3, further comprising a scanning element for translating the beam across the cornea.
- 5. The laser system of claim 3, wherein the optical train further comprises an imaging system having a depth of field separated from the cornea so as to form a blurred image of the aperture on the cornea.
- 6. The laser system of claim 5, further comprising a collimation lens positioned near the aperture for focusing the beam to a waist about a back focal point of the imaging system to collimate the beam near the cornea.
- 7. The laser system of claim 6, further comprising a temporal integrator for rotating the first beam.
- 8. The laser system of claim 6, wherein the optical element comprises a spatial integrator for splitting the laser beam into the plurality of laser beams and contouring a laser beam intensity from an initial energy profile distribution to a predetermined integrated laser beam energy profile distribution at a spatial integration plane.
- 9. The laser system of claim 8, wherein the aperture is separated from the spatial integration plane.
- 10. The laser system of claim 8, wherein the spatial integrator comprises a hexagonal array producing seven overlapping beams at the spatial integration plane.
- 11. The laser system of claim 3, wherein the aperture further profiles the first beam, and wherein the aperture is rotatable so as to rotate the beams about differing axes.
- 12. A laser system for sculpting a region of a cornea of an eye to effect a predetermined change in shape, the system comprising:
a laser for generating a laser beam of an ablative energy, the laser beam being pulsed to generate a first plurality of laser beam pulses; a spatial integrator comprising a hexagonal array for splitting the laser beam into a second plurality of seven laser beams, and for contouring the laser beam intensity from an initial energy profile distribution to a predetermined integrated laser beam energy profile distribution at the spatial integration plane whereby the second plurality of seven beams overlap; a temporal integrator for rotating the second plurality of seven simultaneous beams amid the laser beam pulses of the first plurality; a variable aperture for controlling the passing of the beam, the aperture being positioned to intercept the laser beam at a plane other than the spatial integration plane, a dimension of the aperture changing and the aperture rotating amid the pulses of the first plurality; an optical element for simultaneously overlapping the second plurality of seven beams, the optical element comprising an imaging system for forming a blurred image of the aperture on the region; a scanning element for translating the second plurality of seven simultaneous beams amid the first plurality of laser beam pulses; and a collimation lens positioned about the aperture for focusing the beam to a waist near a focal point of the imaging system to collimate the beam near the region.
- 13. A laser system for sculpting a region of a cornea to effect a predetermined change in shape, the system comprising:
a laser for generating a first beam of laser energy suitable for ablation of the cornea; and an optical train coupled to the beam, the optical train including an optical element which separates the first beam into a plurality of laser beams, wherein the optical train directs the plurality of optical beams toward partially overlapping areas of the cornea.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional from U.S. Ser. No. 09/935,509, filed Aug. 22, 2001, which is a divisional from U.S. Ser. No. 09/274,499, filed Mar. 23, 1999, which claims the benefit of priority from U.S. Provisional Patent Application Serial No. 60/082,156, filed Apr. 17, 1998, the full disclosure of which is incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60082156 |
Apr 1998 |
US |
Divisions (2)
|
Number |
Date |
Country |
Parent |
09935509 |
Aug 2001 |
US |
Child |
10327486 |
Dec 2002 |
US |
Parent |
09274449 |
Mar 1999 |
US |
Child |
09935509 |
Aug 2001 |
US |