IP Library Granted Patent US 11,745,026
Granted Patent B2
US 11,745,026 · App. 15/811,651 · Granted Sep 5, 2023

Laser assisted wound healing protocol and system

Inventor: Margaret V. Kalmeta (Irvine, CA)
Assignee: THE BIOREGENTECH INSTITUTE, INC.
A61N5/0603A61C1/0046A61C19/043A61K33/42A61K38/39A61N5/067A61N5/0616A61N5/0624A61N2005/063A61N2005/0606A61N2005/0644A61N2005/0651A61N2005/0662A61N2005/0663
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Quick Facts
Patent No.
US 11,745,026
App. No.
15/811,651
Granted
Sep 5, 2023
Kind
B2
Abstract

The present invention provides for devices and methods of treating wounds, including general wounds, gum disease and gingival tissues post scaling/root planning, using a diode laser which generates a beam of light having a wavelength in the visible portion of the electromagnetic spectrum (400 nm-700 nm). Further disclosed are devices and methods capable of stimulating tissue regeneration at the site of a wound.

Claims (18)

1. A device for treatment of wounds on or in an individual, the device having at least a first energy source and a second energy source configured to be used together with the first energy source, the first and second energy sources both configured for biostimulating soft and hard tissue, wherein:

the device has a handpiece and the first energy source is configured to generate an energy waveform having a wattage of less than 9 W for delivery to the soft and hard tissue;

the waveform has a frequency in a range of 0.5 Hz to less than 100 kHz; and

the second energy source comprises a light emitting diode (LED), or a diode laser, configured to generate light having a wavelength in a portion of an electromagnetic spectrum between 400 nm-1400 nm wavelength, with a power of 0.003 W to 3 W or 0.005 to 5 W average power per opening of the handpiece.

2. The device of claim 1 , wherein the wavelength is selected from a group consisting of an infrared wavelength range (700-1400 nm), a green wavelength range (520-570 nm), a red wavelength range (620-750 nm), and a yellow wavelength range (570-590 nm).

3. The device of claim 1 , wherein the energy waveform is more than one wave.

4. The device of claim 1 , wherein the energy waveform is more than one square or sine wave.

5. The device of claim 1 , wherein the second energy source is a laser.

6. The device of claim 1 , further comprising a power source configured to power the device.

7. A device for treatment of wounds on or in an individual, the device having at least a first energy source and a second energy source configured to be used together with the first energy source, the first and second energy sources both configured for biostimulating soft and hard tissue, wherein the device has a handpiece and the first energy source is a light emitting diode (LED) or a diode laser, the LED or the laser configured to generate light having a wavelength in an electromagnetic spectrum between 400 nm -1400 nm for delivery to the soft and hard tissue, with a power of 0.003 W to 3 W or 0.005 to 5 W average power per opening of the handpiece;

wherein the light having the wavelength between 400 nm-1400 nm and energy from the second energy source are configured to cause tissue regeneration in a wound when delivered to the wound through the handpiece; and

wherein the LED or the diode laser is configured to generate the light having the wavelength between 400 nm-1400 nm, with the power of 0.003 W to 3 W or 0.005 to 4 W average power per opening of the handpiece with an energy waveform from the second energy source having a wattage of less than 4 W and a frequency in a range of 0.5 Hz to less than 100 KHz.

8. A device for treatment of wounds on or in an individual, the device having at least a first energy source configured for biostimulating soft and hard tissue, wherein the device has a handpiece and the first energy source is a light emitting diode (LED) configured to emit light onto the soft and hard tissue, the light having a wavelength in an electromagnetic spectrum between 400 nm -1400 nm, with a power of 0.003 W to 3 W or 0.005 to 5 W average power per opening of the handpiece;

wherein the light having the wavelength between 400 nm-1400 nm is configured to cause tissue regeneration in a wound when delivered to the wound through the handpiece together with an energy waveform having a wattage of less than 9 W and a frequency in a range of 0.5 Hz to less than 100 KHz.

9. A device for treatment of a wound on or in an individual, the device comprising first and second energy sources both configured for biostimulating soft and hard tissue, and a handpiece,

the first energy source configured to generate an energy waveform having a wattage of less than 4 W for delivery to the soft and hard tissue, wherein the waveform has a frequency in a range of 0.5 Hz to less than 100 kHz;

the second energy source configured to be used together with the first energy source, the second energy source comprising a light emitting diode or a diode laser configured to generate light having a wavelength in a portion of an electromagnetic spectrum between 400 nm-1400 nm for delivery to the soft and hard tissue; and

wherein the energy waveform having the wattage of less than 4 W and the light having the wavelength between 400 nm-1400 nm are configured to cause tissue regeneration in the wound when delivered to the wound through the handpiece.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT APPLICATION NO. 17/545179 TO THE CORRECT APPLICATION NO. 17545178 PREVIOUSLY RECORDED AT REEL: 060751 FRAME: 0708. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 17, 2022
From: BIOREGENTECH INC.
To: THE BIOREGENTECH INSTITUTE, INC.
Reel/Frame 061476/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2022
From: BIOREGENTECH INC.
To: THE BIOREGENTECH INSTITUTE, INC.
Reel/Frame 060751/0708 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2021
From: KALMETA, MARGARET V.
To: BIOREGENTECH, INC.
Reel/Frame 055377/0781 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2020
From: KALMETA, MARGARET V.
To: BIOREGENTECH, INC.
Reel/Frame 051696/0212 →
Continuity (5)
Continuation In Part 15348793 · Nov 10, 2016
Continuation In Part 14937858 · Nov 10, 2015
Continuation In Part 13864226 · Apr 16, 2013
Continuation In Part 13078757 · Apr 4, 2011
Related Publication 20180154172A1 · Jun 7, 2018
Cited By (1)
US 12,708,660