IP Library Patent Application 15703238
Patent Application
App. No. 15/703,238

METHOD AND SYSTEM FOR CONFIGURING BIOMEDICAL LASER

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
15/703,238
Abstract

A method and a system for configuring a first biomedical laser. The method includes providing a first set of operational parameters; operating the first biomedical laser using the first set of operational parameters; measuring an operational response of the first biomedical laser; measuring a light output properties of the first biomedical laser; analyzing the measured light output properties and the operational response; and triggering an action based on the analysis.

Claims (48)

1 . A method for configuring a first biomedical laser, the method comprising

providing a first set of operational parameters;

operating the first biomedical laser using the first set of operational parameters;

measuring an operational response of the first biomedical laser;

measuring a light output properties of the first biomedical laser;

analyzing the measured light output properties and the operational response; and

triggering an action based on the analysis.

2 . A method according to claim 1 , wherein the first set of operational parameters comprises at least one of a target wavelength of the first biomedical laser, a target energy output of the first biomedical laser and an operational mode selected from a group of a treatment modality, biomedical activation and measurement process.

3 . A method according to claim 1 , wherein measuring the light output properties of the first biomedical laser comprises measuring at least one of a wavelength of emitted laser light, a spectrum of emitted laser light, an energy of the emitted laser light, a pulse energy of the emitted laser light, an optical power of the emitted laser light, and a pulse form factor of the emitted laser light.

4 . A method according to claim 1 , wherein measuring the light output properties is carried out by arranging at least one of a first light sensor in a laser component module, a second light sensor in proximity of a light guide, a third light sensor at an end of the light guide and a fourth light sensor in an optical head.

5 . A method according to claim 1 , wherein measuring the operational response of the first biomedical laser comprises measuring at least one of voltage transient as a function of time, current transient as a function of time, temperature of a laser light emitter and power usage of the first biomedical laser during operation.

6 . A method according to claim 1 , wherein the analysis comprises comparing the measured operational response and the light output properties with a first set of reference values.

7 . A method according to claim 6 , wherein the first set of reference values comprises at least one of a target wavelength, a target energy output and a pulse form factor.

8 . A method according to claim 1 , wherein the action is deriving a second set of operational parameters based on the analysis and providing the second set of operational parameters.

9 . A method according to claim 8 , wherein the second set of operational parameters comprises operational parameters for a different treatment modality, parameters for biomedical activation or parameters for measurement process.

10 . A method according to claim 1 , wherein the action is initiating a maintenance procedure for the first biomedical laser.

11 . A method according to claim 1 , wherein the method further comprises transmitting the measured operational response and the light output properties to a server arrangement via a network.

12 . A method according to claim 11 , wherein the analyzing the measured light output properties and the operational response is carried out in the server arrangement.

13 . A method according to claim 1 , further comprising

storing the measured operational response and the light output properties;

basing a second set of reference values on the stored measured operational response and the light output properties; and

using the second set of reference values for configuring a second biomedical laser.

14 . A method according to claim 13 , wherein storing the measured operational response and the light output properties comprises storing the measured operational response and the light output properties at a memory unit of a processor coupled to the first biomedical laser.

15 . A method according to claim 13 , wherein storing the measured operational response and the light output properties comprises

transmitting the measured operational response and the light output properties to the server arrangement via a network; and

storing the measured operational response and the light output properties at a database of the server arrangement.

16 . Method according claim 1 , wherein the method further comprises identifying a person, extracting from the database a profile data of the person and providing the first set of operational parameters based on the profile data.

17 . Method according to claim 1 , wherein the method further comprises obtaining a location of the biomedical laser, extracting from the database a setting data of the associated with the biomedical laser and the location and providing the first set of operational parameters based on the setting data.

18 . Method according to claim 1 , wherein the method further comprises obtaining product information, extracting from the database an operational data associated with the product information and the biomedical laser and providing the first set of operational parameters based on the operational data.

19 . A system for configuring a first biomedical laser, the system comprising

a processor coupled to the first biomedical laser, the processor being configured to

provide a first set of operational parameters;

operate the first biomedical laser using the first set of operational parameters;

measure an operational response of the first biomedical laser; and

a light sensing arrangement communicably coupled to the processor, the light sensing arrangement being configured to measure a light output properties of the first biomedical laser;

wherein the system is further configured to analyze the measured light output properties and the operational response, and to trigger an action based on the analysis.

20 . A system according to claim 19 , wherein the first biomedical laser comprises

a laser light emitter arranged in a laser component module; and

a light guide optically coupled to the laser light emitter via a light coupling arrangement.

21 . A system according to claim 19 , wherein the light sensing arrangement comprises at least one of

a first light sensor adapted to be arranged in the laser component module;

a second light sensor adapted to be arranged in proximity of the light guide;

a third light sensor adapted to be arranged at an end of the light guide and;

a fourth light sensor adapted to be arranged inside of the optical head.

22 . A system according to claim 19 , wherein the processor comprises a memory module, the memory module being configured to store the measured operational response and the light output properties.

23 . A system according to claim 19 , further comprising a server arrangement communicably coupled to a communication module of the processor via a network.

24 . A system according to claim 23 , wherein the server arrangement is configured to analyze the measured light output properties and the operational response and to trigger an action based on the analysis.

25 . A system according to claim 23 , wherein the server arrangement comprises a database configured to store the measured operational response and the light output properties.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2017
From: VILOKKINEN, VILLE; UUSIMAA, PETTERI; ORSILA, SEPPO
To: MODULIGHT OY
Reel/Frame 043575/0573 →