IP Library Granted Patent US 10,406,380
Granted Patent B2
US 10,406,380 · App. 15/368,645 · Granted Sep 10, 2019

Method for nonpharmacologic temporary constriction of a pupil

Inventors: Ronald Michael Kurtz (Irvine, CA); Gergely T. Zimanyi (Berkeley, CA)
A61N5/0625A61F9/008A61N1/403A61F2009/00876A61F2009/00895A61N2005/067A61N2005/0626A61N2005/0651A61N2005/0659
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Quick Facts
Patent No.
US 10,406,380
App. No.
15/368,645
Granted
Sep 10, 2019
Kind
B2
Abstract

A method for temporarily constricting a pupil of an eye by an ophthalmic stimulator comprises generating an irradiation control signal by an irradiation control system, generating an irradiation by an irradiation source, coupled to the irradiation control system, receiving the irradiation and delivering a patterned irradiation to an iris of the eye with an irradiation delivery system, and controlling at least one of the irradiation source and the irradiation delivery system by the irradiation control signal of the irradiation control system so that the patterned irradiation is causing a temporary constriction of the pupil of the eye, without causing a permanent constriction of the pupil.

Claims (69)

1. A method for temporarily constricting a pupil of a presbyopic eye by an ophthalmic stimulator, the method comprising:

generating an irradiation control signal by an irradiation control system;

generating an irradiation by an irradiation source, coupled to the irradiation control system;

receiving the irradiation and delivering a patterned, non-scanning irradiation to the iris of the eye with an irradiation delivery system; and

controlling at least one of the irradiation source and the irradiation delivery system by the irradiation control signal of the irradiation control system so that the patterned irradiation is causing a temporary constriction of the pupil of the iris of the eye, including an at least 5% reduction of a radius of the pupil that lasts between one hour and one day, without causing a permanent constriction of the pupil of the iris of the eye, wherein

parameters of the irradiation source and the irradiation delivery system are selected in a combination to cause the temporary constriction of the pupil including:

a wavelength of the irradiation source in a range of 400-4,000 nm;

a power density of the patterned irradiation in a range of 0.1-1000 mW/cm 2 ;

a total energy, deposited by the patterned irradiation in a range of 10 μJ-10 J;

a time period of delivering the irradiation is within a range of 1-100 seconds; and

increasing a temperature of a treatment region of the iris into a range of 45-60 degrees Celsius with the irradiation.

2. The method of claim 1 , the generating the irradiation comprising:

generating at least one incoherent radiation, selected from

a light beam, an electromagnetic irradiation, an infrared beam, a radiofrequency radiation, and a sound.

3. The method of claim 1 , the generating the irradiation comprising:

generating at least one coherent radiation, selected from

a laser beam, a pulsed laser beam, and a continuous wave laser beam.

4. The method of claim 1 , the causing the temporary constriction of the pupil comprising:

increasing a temperature of the treatment region of the iris to a range of 50-55 degrees Celsius.

5. The method of claim 1 , wherein:

the irradiation control system comprise an imaging system a user interface; and

the generating the irradiation control signal includes

generating the image of the iris of the eye with the imaging system for a user,

receiving an image-based input from the user through the user interface, and

generating the irradiation control signal to control the irradiation delivery system to deliver the patterned irradiation in accordance with the received image-based input.

6. The method of claim 5 , wherein:

the patterned irradiation impacts the iris in a ring pattern; and

the image-based input is at least one of an inner radius and an outer radius of the ring pattern.

7. The method of claim 1 , wherein:

the irradiation control system comprises an imaging system and an image processor; and

the generating the irradiation control signal includes:

generating an image of the iris of the eye with the imaging system for the image processor;

processing the image of the iris by the image processor and generating an image-based input;

receiving the image-based input from the image processor; and

generating the irradiation control signal to control the irradiation delivery system to deliver the patterned irradiation in accordance with the received image-based input.

8. The method of claim 7 , wherein:

the patterned irradiation impacts the iris in a ring pattern; and

the image-based input is at least one of an inner radius and an outer radius of the ring pattern.

9. The method of claim 1 , wherein:

the irradiation control system comprises an alignment system; and

the generating the irradiation control signal includes:

processing alignment data with the alignment system, and

generating the irradiation control signal to control the irradiation delivery system to deliver the patterned irradiation to the iris in a pattern aligned with a pupil of the iris.

10. The method of claim 9 , wherein:

the processing alignment data includes:

generating an image of the iris with an imaging system, and

overlaying an alignment pattern on the image; and

the generating the irradiation control signal includes at least one of

generating a misalignment warning signal, and

generating an alignment-guidance signal.

11. The method of claim 1 , wherein:

the irradiation control system comprises a memory; and

the generating the irradiation control signal includes:

recalling stored data from the memory, representing at least one of an irradiation pattern and patient data, and

generating the irradiation control signal to control the irradiation delivery system to deliver the patterned irradiation to the iris in accordance with the recalled stored data.

12. The method of claim 1 , wherein:

the irradiation control system comprises a pattern generator; and

the generating the irradiation control signal includes:

generating an irradiation pattern; and

generating the irradiation control signal to control the irradiation delivery system to deliver the patterned irradiation with the generated irradiation pattern.

13. The method of claim 1 , comprising:

acquiring and analyzing patient data;

selecting a treatment region based on the analyzing of the patient data; and

delivering the patterned irradiation to the selected treatment region.

14. The method of claim 13 , the selecting the treatment region comprising:

selecting a ring pattern with an inner radius larger than a radius of a region of the circular sphincter muscles.

15. The method of claim 14 , the selecting the treatment region comprising:

selecting a ring pattern with an outer radius smaller than a radius of a region of the circular sphincter muscles.

16. The method of claim 1 , wherein the generating an irradiation control signal is based on imaging of the iris with an imaging system.

Continuity (2)
Continuation In Part 15293269 · Oct 13, 2016
Related Publication 20180104509A1 · Apr 19, 2018
Cited By (2)
US 12,653,716 US 12,697,253