IP Library › Patent Application 17187370
Patent Application
App. No. 17/187,370

BATTERY POWERED SYSTEMS FOR LIGHT THERAPY AND RELATED METHODS

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Quick Facts
Patent No.
US None
App. No.
17/187,370
Abstract

Battery powered light therapy systems capable of delivering 2-10 Joules per cm. sq. of light energy to a target treatment zone covering more than 700 sq. cm. of body surface area such that the light penetrates to a depth of 2 to 8 mm below a skin surface of the target treatment zone.

Claims (34)

1 . A system for delivery of light therapy, said system comprising:

a light emitting pad member having a light emitter configured to emit blue light, red light or near infrared light;

said pad member being formable into a shape which corresponds to a shape of a body portion so as to be positionable on or near that body portion with said light emitter being within a desired distance of a target treatment zone located on or in that body portion; and

a battery which delivers power to the light emitter;

said battery and said desired distance being configured such that the battery powers the light emitter sufficiently to cause the light emitter to emit light which travels said desired distance and delivers 2-10 Joules per square centimeter of light energy within said target treatment zone.

2 . A system according to claim 1 wherein the light emitter emits blue light and the target treatment zone is located at a skin surface of the body part.

3 . A system according to claim 1 wherein the light emitter emits red light and the target treatment zone is located 2 to 8 mm below a skin surface of the body part.

4 . A system according to claim 1 wherein the light emitter emits near infrared light and the target treatment zone is located up to 25 mm below a skin surface of the body part.

5 . A system according to claim 1 wherein the battery delivers at least about 2.4 amps of power to the light emitter.

6 . A system according to claim 5 wherein the battery comprises a 4 cell, 7.2 volt, 6.8 Amp hour lithium ion battery.

7 . A system according to claim 6 wherein the voltage is stepped up to 12V.

8 . A system according to claim 1 having a plurality of light emitters.

9 . A system according to claim 8 wherein the plurality of light emitters include blue, red and near infrared light emitters.

10 . A system according to claim 9 configured to operate in a plurality of light treatment modes.

11 . A system according to claim 10 wherein the plurality of available light treatment modes comprises:

a first mode wherein primarily or entirely blue light is emitted;

a second mode wherein primarily or entirely red light is emitted; and

a third mode wherein primarily or entirely near infrared light is emitted.

12 . A system according to claim 11 wherein the near infrared light having a wavelength of or approximately 880 nM is emitted.

13 . A system according to claim 11 wherein the red light having a wavelength of or approximately 640 nM is emitted.

14 . A system according to claim 11 wherein the blue light having a wavelength of or approximately 465 nM is emitted.

15 . A system according to claim 11 wherein:

when operating in the first light treatment mode, the blue light emitters emit blue light at a 1% duty cycle and the red and near infrared light emitters will fade up from 1% to 90% in 20 seconds;

when operating in the second light treatment mode, the blue light emitters will fade up from 1% to 90% in 20 seconds and the red and near infrared light emitters will fade up from 1.3% to 2.5% in 2.5 seconds; and

when operating in the third light treatment mode, the blue light emitters will fade up from 1% to 90% in 20 seconds and the red and near infrared light emitters will cycle from 30% to 80% in 11.5 seconds.

16 . A system according to claim 1 configured to alternately deliver pulsed or non-pulsed light.

17 . A system according to claim 1 configured to deliver said light energy to a target treatment zone covering more than 700 cm. sq. of body surface area.

18 . A system according to claim 17 wherein configured to deliver 2 to 10 Joules per cm. sq. of light energy to a depth of up to 25 mm below a skin surface covering more than 700 square centimeters of body surface area.

19 . A method comprising the steps of:

obtaining or providing a system according to claim 1 ;

positioning the pad member on or near the body portion; and

causing the battery to deliver sufficient power to the light emitter(s) to cause the light emitter to emit light which travels said desired distance and delivers 2-10 Joules per square centimeter of light energy within said target treatment zone.

20 . A method according to claim 19 wherein the light emitters comprise red LEDs and the pad member is sized to deliver light energy from the red LEDs to a target treatment zone that covers more than 700 cm. sq. and wherein the causing step comprises:

causing the battery to deliver sufficient power to the red LEDs to cause the red LEDs to deliver 2-10 Joules per cm. sq. of red light to the target treatment zone covering more than 700 sq. cm. of body surface area such that the red light penetrates to a depth of 2 to 8 mm below a skin surface of the target treatment zone.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2023
From: JOHNSON, PATRICK LAMBERTH; GIBSON, ROGER ALLEN
To: BIOPHOTAS, INC.
Reel/Frame 062468/0026 →