IP Library Granted Patent US 10,953,239
Granted Patent B2
US 10,953,239 · App. 16/094,847 · Granted Mar 23, 2021

Laser control method and laser irradiation apparatus using same

Inventor: Jung Ho Lee (Daejeon, KR)
Assignee: OH & LEE MEDICAL ROBOT, INC.
A61N5/0616A61B5/00A61B18/203A61B34/30A61B5/0059A61B5/0064A61B5/1032A61B2017/00057A61B2017/00061A61B2017/00066A61B2018/00452A61B2018/00642A61B2018/00732A61B2018/00904A61B2018/20355A61B2090/373A61N2005/067A61N2005/0626A61N2005/0628A61N2005/0643
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Quick Facts
Patent No.
US 10,953,239
App. No.
16/094,847
Granted
Mar 23, 2021
Kind
B2
Abstract

Provided are a laser control method and a laser irradiation apparatus thereof, which can efficiently perform the laser treatment. The laser control method includes a setting step of setting a guide path on a surface of an object; and an irradiating step of irradiating a laser onto the surface of the object corresponding to the guide path, wherein at least one of a fluence or a frequency of the laser is gradually increased at the beginning stage of the laser irradiation and at least one of the fluence or the frequency of the laser is gradually decreased at the end of the laser irradiation.

Claims (25)

1. A laser control method comprising:

setting a guide path within a region of interest (ROI) on a surface of an object, wherein the region of interest (ROI) includes a region of therapy (ROT) and a region of normal (RON) that are distinguished based on at least one of a color, contrast, contour and texture on the surface of the object; and

irradiating a laser onto the surface of the object corresponding to the guide path using an end-effector mounted on a robot arm,

wherein movement of the robot arm includes an acceleration section (D1) where a moving speed of the robot arm is gradually increased, a maintain section (D2) where the moving speed of the robot arm is constantly maintained and a reduction section (D3) where the moving speed of the robot arm is gradually decreased,

wherein during the acceleration section (D1), at least one of a fluence and a frequency of the laser is gradually increased in proportion to the moving speed of the robot arm,

wherein during the maintain section (D2), laser irradiation is turned on when passing through the region of therapy (ROT) and the laser irradiation is turned off when passing through the region of normal (RON), and

wherein during the reduction section (D3), at least one of the fluence and the frequency of the laser is gradually decreased in proportion to the moving speed of the robot arm.

2. The laser control method according to claim 1 , the method further comprising:

collecting raw data by scanning the object;

constituting a three-dimensional image of the object based on the raw data;

setting the region of interest (ROI) on the surface of the object in the three-dimensional image; and

setting the guide path passing through the region of interest (ROI).

3. The laser control method according to claim 2 , wherein the raw data includes a two-dimensional image and depth information.

4. A laser irradiation apparatus comprising:

a motion controlling unit for setting a guide path within a region of interest (ROI) on a surface of an object, wherein the region of interest (ROI) includes a region of therapy (ROT) and a region of normal (RON) that are distinguished based on at least one of a color, contrast, contour and texture on the surface of the object; and

a robot arm, mounted with an end-effector, for applying a laser to the surface of the object corresponding to the guide path,

wherein movement of the robot arm includes an acceleration section (D1) where a moving speed of the robot arm is gradually increased, a maintain section (D2) where the moving speed of the robot arm is constantly maintained and a reduction section (D3) where the moving speed of the robot arm is gradually decreased,

wherein during the acceleration section (D1), at least one of a fluence and a frequency of the laser is gradually increased in proportion to the moving speed of the robot arm,

wherein during the maintain section (D2), laser irradiation is turned on when passing through the region of therapy (ROT) and the laser irradiation is turned off when passing through the region of normal (RON), and

wherein during the reduction section (D3), at least one of the fluence and the frequency of the laser is gradually decreased in proportion to the moving speed of the robot arm.

5. The laser irradiation apparatus according to claim 4 , the apparatus further comprising:

a scanner for collecting a raw data by scanning the object; and

a vision controlling unit for constituting a three-dimensional image of the object based on the raw data, setting the region of interest (ROI) on the surface of the object in the three-dimensional image;

wherein the motion controlling unit sets the guide path passing through the region of interest (ROI).

6. The laser irradiation apparatus according to claim 5 , wherein the raw data includes a two-dimensional image and depth information.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2023
From: OH & LEE MEDICAL ROBOT, INC.
To: RAINBOW ROBOTICS
Reel/Frame 063356/0585 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2018
From: LEE, JUNG HO
To: OH & LEE MEDICAL ROBOT, INC.
Reel/Frame 047222/0765 →
Priority Claims (1)
KR 10-2016-0047357 · Apr 19, 2016 · national
Continuity (1)
Related Publication 20190117995A1 · Apr 25, 2019