IP Library › Granted Patent US 11,883,328
Granted Patent B2
US 11,883,328 · App. 16/426,497 · Granted Jan 30, 2024

System and method for nomogram-based refractive laser surgery

Inventors: Peter Riedel (Nuremberg, DE); Johannes Agethen (Erlangen, DE)
Assignee: Alcon Inc.
A61F9/00804A61F9/00827A61F2009/00859A61F2009/00872
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Quick Facts
Patent No.
US 11,883,328
App. No.
16/426,497
Granted
Jan 30, 2024
Kind
B2
Abstract

A surgical system corrects a surgical parameter based on a nomogram specific for a refractive laser surgery system to provide a nomogram-based corrected surgical parameter; stores the surgical parameter and the nomogram-based corrected surgical parameter as data for a patient or for one or both eyes of the patient; and compares the surgical parameter and nomogram-based corrected surgical parameter to generate a graphical representation of the surgical parameter, a target outcome parameter associated with the surgical parameter, or both, and the nomogram-based corrected surgical parameter, to generate a warning based on a comparison of the nomogram-based corrected surgical parameter to the surgical parameter or an absolute value, or both.

Claims (52)

1. A refractive laser surgery system, the system comprising:

a processor having access to memory media storing instructions or sets of instructions executable by the processor to:

identify a surgical parameter;

correct the surgical parameter based on a nomogram specific for the refractive laser surgery system to provide a nomogram-based corrected surgical parameter, the nomogram based on actual surgical parameters and actual outcome parameters;

store the surgical parameter and the nomogram-based corrected surgical parameter in the memory media as data for a patient or for one or both eyes of the patient;

store the nomogram in the memory;

compare the surgical parameter and nomogram-based corrected surgical parameter to generate a graphical representation of the surgical parameter, a target outcome parameter associated with the surgical parameter, or both, and the nomogram-based corrected surgical parameter, to generate a warning based on a comparison of the nomogram-based corrected surgical parameter to the surgical parameter; and

periodically update the nomogram based on subsequent actual surgical parameters and subsequent actual outcome parameters; and

a laser configured to treat the one or both eyes of the patient in response to instructions from the processor.

2. The refractive laser surgery system of claim 1 , wherein the nomogram specific for the refractive laser surgery system is generated using past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system.

3. The refractive laser surgery system of claim 1 , wherein the system further comprises a user interface and the instructions or sets of instructions are further executable by the processor to:

cause the user interface to display the graphical representation or convey the warning to a user; and

accept an input from the user that verifies the nomogram-based corrected surgical parameter and then allow a refractive laser surgery performed using the refractive laser surgery system to proceed, or accept an input from the user that does not verify the nomogram-based corrected surgical parameter and then not allow the refractive laser surgery to proceed.

4. The refractive laser surgery system of claim 1 , wherein the processor further has access to memory media storing past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system, and instructions or sets of instructions are executable by the processor to:

create the nomogram specific for the refractive laser surgery system based on all or a set of the past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system; and

store the nomogram in the memory media.

5. The refractive laser surgery system of claim 4 , wherein the instructions or set of instructions are further executable by the processor to:

compare past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system to determine if a systematic deviation occurs between the past target outcome parameter and the past actual outcome parameter based on the past surgical parameter; and

if a systematic deviation occurs, create the nomogram for correcting the surgical parameter.

6. The refractive laser surgery system of claim 4 , wherein the instructions or set of instructions are further executable by the processor to create a new nomogram using additional past data if a set time interval has passed.

7. The refractive laser surgery system of claim 1 , further comprising diagnostic equipment, wherein the instructions or set of instructions are further executable by the processor to cause the diagnostic equipment to determine the surgical parameter, an actual outcome parameter associated with the surgical parameter, or both.

8. The refractive laser surgery system of claim 1 , wherein the refractive laser surgery system further comprises a communication interface, and wherein the instructions or set of instructions are further executable by the processor to, via the communication interface, obtain the surgical parameter, an actual outcome parameter associated with the surgical parameter, or both from diagnostic equipment external to the refractive laser surgery system.

9. The refractive laser surgery system of claim 1 , wherein the nomogram comprises a correction table, a set of instructions that, when executed by the processor, arrive at a same value as would be obtained when using a correction table, or a function that calculates appropriate corrections.

10. The refractive laser surgery system of claim 1 , wherein the instructions or set of instructions are further executable by the processor to:

calculate an ablation profile or a photodisruption profile for a cornea of an eye of the patient using the nomogram-based corrected surgical parameter;

store the ablation profile or photodisruption profile in the memory media as data for the patient or for one or both eyes of the patient; and

compare the ablation profile or photodisruption profile to the surgical parameter to determine if a refractive laser surgery on the cornea of the eye may safely proceed using the ablation profile or photodisruption profile.

11. A method for performing refractive laser surgery on a cornea of an eye of a patient using a refractive laser surgery system comprising a laser, a processor, and memory media accessible by the processor and storing instructions or sets of instructions executable by the processor, the method comprising:

identifying, by the processor, a surgical parameter;

correcting, by the processor, the surgical parameter based on a nomogram specific for the refractive laser surgery system to provide a nomogram-based corrected surgical parameter, the nomogram based on actual surgical parameters and actual outcome parameters;

storing, by the processor, the surgical parameter and the nomogram-based corrected surgical parameter in the memory media as data for the patient or for one or both eyes of the patient;

storing, by the processor, the nomogram in the memory media;

periodically updating, by the processor, the nomogram based on subsequent actual surgical parameters and subsequent actual outcome parameters;

comparing, by the processor, the surgical parameter and the nomogram-based corrected surgical parameter to generate a graphical representation of the surgical parameter, a target outcome parameter associated with the surgical parameter, or both, and the nomogram-based corrected surgical parameter, to generate a warning based on a comparison of the nomogram-based corrected surgical parameter to the surgical parameter;

calculating, by the processor, an ablation profile or photodisruption profile for the cornea of the eye of the patient using the nomogram-based corrected surgical parameter; and

sending, by the processor, instructions to the refractive laser surgery system to perform the refractive laser surgery on the cornea of the eye of the patient.

12. The method of claim 11 , wherein the nomogram specific for the refractive laser surgery system is generated using past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system.

13. The method of claim 11 , wherein the method further comprises:

causing a user interface of the refractive laser surgery system to display the graphical representation or convey the warning to a user; and

accepting an input from the user that verifies the nomogram-based corrected surgical parameter and then allowing a refractive laser surgery performed using the refractive laser surgery system to proceed, or accepting an input from the user that does not verify the nomogram-based corrected surgical parameter and then not allowing the refractive laser surgery to proceed.

14. The method of claim 11 , wherein the method further comprises:

creating the nomogram specific for the refractive laser surgery system based on all or a set of past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system stored in the memory media; and

storing the nomogram in the memory media.

15. The method of claim 11 , wherein the method further comprises:

comparing past surgical parameter data, past target outcome parameter data associated with the past surgical parameter data, and past actual outcome parameter data for the refractive laser surgery system to determine if a systematic deviation occurs between the past target outcome parameter and the past actual outcome parameter based on the surgical parameter; and

if a systematic deviation occurs, creating the nomogram for correcting the surgical parameter.

16. The method of claim 15 , wherein the method further comprises creating a new nomogram using additional past data if a set time interval has passed.

17. The method of claim 11 , wherein the method further comprises determining the surgical parameter, an actual outcome parameter associated with the surgical parameter, or both using diagnostic equipment of the refractive laser surgery system.

18. The method of claim 11 , wherein the method further comprises:

determining the surgical parameter, an actual outcome parameter associated with the surgical parameter, or both using diagnostic equipment external to the refractive laser surgery system; and

communicating the surgical parameter, an actual outcome parameter associated with the surgical parameter, or both from the diagnostic equipment to the refractive laser surgery system.

19. The method of claim 11 , wherein the nomogram comprises a correction table, a set of instructions that, when executed by the processor, arrive at a same value as would be obtained when using a correction table, or a function that calculates appropriate corrections.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2019
From: RIEDEL, PETER; AGETHEN, JOHANNES
To: WAVELIGHT GMBH
Reel/Frame 049321/0485 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2019
From: WAVELIGHT GMBH
To: ALCON INC.
Reel/Frame 049321/0686 →
Continuity (2)
Provisional Application 62678027 · May 30, 2018
Related Publication 20190365568A1 · Dec 5, 2019
Cited By (2)
US 12,414,690 US 12,730,033