IP Library Granted Patent US 7,189,224
Granted Patent B2
US 7,189,224 · App. 11/083,793 · Granted Mar 13, 2007

System and method for improved material processing using a laser beam

Assignee: Intralase Corp.
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Quick Facts
Patent No.
US 7,189,224
App. No.
11/083,793
Granted
Mar 13, 2007
Kind
B2
Abstract

A method and system for improved material processing using a laser beam. The method and system includes directing a laser beam above, at or below the surface of the material in one or more preferred patterns and with preferred laser pulse characteristics specific to the material to reduce or mitigate the accumulation or effects of gas, debris, fluid, or other by-products of photodisruption either at the location where additional laser pulses are being placed or in other sensitive locations in the material.

Claims (29)

1. A computer-implemented method for directing a laser beam to create a resected area of corneal tissue, said method comprising:

receiving a selection for a geometric border;

orienting the geometric border about a display of a cornea, the geometric border having a predetermined circumference;

receiving a selection for a type of pattern cut;

directing the laser beam to perform photodisruption of corneal tissue to create a reservoir; and

directing the laser beam to perform photodisruption of corneal tissue using the selected pattern cut for the selected geometric border, wherein the pattern cut forms an anterior internal surface and a posterior internal surface of the corneal tissue.

2. The computer-implemented method of claim 1 , further comprising determining a central point of the cornea for positioning the circumference of the geometric border about the cornea.

3. The computer-implemented method of claim 1 , wherein the cornea has an outer surface and the photodisruption is performed at a selected depth below the corneal surface.

4. The computer-implemented method of claim 1 , wherein the type of pattern cut is spiral.

5. The computer-implemented method of claim 1 , wherein the type of pattern cut is concentric.

6. The computer-implemented method of claim 1 , wherein the type of pattern cut is rasterized.

7. The computer-implemented method of claim 1 , wherein the directing a laser beam to perform photodisruption of corneal tissue forms a horizontal resection.

8. The computer-implemented method of claim 7 , further comprising the step of directing the a laser beam to perform photodisruption of corneal tissue to create a vertical resection about the horizontal resection.

9. The computer-implemented method of claim 1 , wherein the reservoir is peripheral to the anterior internal surface and the posterior internal surface.

10. The computer-implemented method of claim 1 , wherein the reservoir is directly connected to a corneal-scleral junction of the eye.

11. The computer-implemented method of claim 1 , wherein the photodisruption of corneal tissue using the selected pattern cut begins near the vicinity of the predetermined circumference.

12. The computer-implemented method of claim 1 , wherein the reservoir is connected to a corneal-scleral junction of the eye via existing channels.

13. The computer-implemented method of claim 1 , wherein the reservoir is connected to a corneal-scleral junction of the eye via potential corneal channels.

14. The computer-implemented method of claim 1 , wherein the reservoir is created at a shallower depth relative to the an anterior internal surface and a posterior internal surface.

15. The computer-implemented method of claim 1 , wherein the reservoir is created at a deeper depth relative to the an anterior internal surface and a posterior internal surface.

16. The computer-implemented method of claim 1 , wherein the reservoir is created in a central location of the posterior internal surface.

17. The computer-implemented method of claim 1 , wherein the reservoir is created with variable laser pulse energies and/or separations to control gas/liquid and debris accumulation.

18. The computer-implemented method of claim 1 , wherein the reservoir is created by photodisruption with variable shape dimensions to control gas/liquid and debris accumulation.

19. The computer-implemented method of claim 1 , further comprising the step of creating one or more additional reservoirs in the corneal tissue adjacent to the geometric border.

20. The computer-implemented method of claim 1 , further comprising the step of creating passageways by photodisrupting corneal tissue from the reservoir to the geometric border.

21. The computer-implemented method of claim 1 , further comprising repeating the step of directing the laser beam to perform photodisruption of corneal tissue using the selected pattern cut.

22. The computer-implemented method of claim 21 , wherein the repeated directing step utilizes different laser parameters than the first directing step.

23. The computer-implemented method of claim 1 , further comprising rotating the selected pattern cut and directing the laser beam to perform photodisruption of the corneal tissue using the rotated pattern cut.

24. The computer-implemented method of claim 1 , further comprising selecting a second pattern cut and directing the laser beam to perform photodisruption of the corneal tissue using the second pattern cut.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Feb 27, 2009
From: BANK OF AMERICA, N.A. AS ADMINISTRATIVE AGENT
To: AMO DEVELOPMENT, LLC, FORMERLY INTRALASE CORP.
Reel/Frame 022320/0483 →
CORRECTIVE ASSIGNMENT TO CORRECT THE U.S. PATENT NO. 5466233 WAS INCORRECTLY ASSIGNED TO AMO DEVELOPMENT, LLC PREVIOUSLY RECORDED ON REEL 020309 FRAME 0349. ASSIGNOR(S) HEREBY CONFIRMS THE INTRALASE CORP.. Recorded Mar 20, 2008
From: INTRALASE CORP.
To: AMO DEVELOPMENT, LLC
Reel/Frame 020679/0026 →
CHANGE OF NAME Recorded Jan 3, 2008
From: INTRALASE CORP.
To: AMO DEVELOPMENT, LLC
Reel/Frame 020309/0349 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jun 29, 2007
From: INTRALASE CORP.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 019501/0208 →
Continuity (3)
Continuation 1039436800 · Mar 21, 2003
Provisional Application 6036711900 · Mar 23, 2002
Related Publication 20050165386A1 · Jul 28, 2005