IP Library Granted Patent US 9,259,594
Granted Patent B2
US 9,259,594 · App. 13/274,378 · Granted Feb 16, 2016

Apparatus and methods for deep tissue laser therapy

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Quick Facts
Patent No.
US 9,259,594
App. No.
13/274,378
Granted
Feb 16, 2016
Kind
B2
Abstract

An improved apparatus and method for deep tissue laser therapy, in which the phase of the laser light is spatially modulated to produce a modulated laser beam. The modulated laser beam is able to restore its intensity profile even after being scattered by the skin or the superficial layer of the tissue, allowing it to penetrate deep into the tissue to provide efficient therapeutic treatment.

Claims (17)

1. A laser therapy apparatus for performing therapeutic treatment inside a biological tissue, the laser therapy apparatus comprising:

a laser light source for producing a laser beam;

an optical component for spatially modulating a phase of said laser beam to convert said laser beam into a Bessel beam; and

means for delivering said Bessel beam into the biological tissue for performing therapeutic treatment inside the biological tissue.

2. The laser therapy apparatus of claim 1 , wherein said laser light source comprises a solid state laser.

3. The laser therapy apparatus of claim 1 , wherein said laser light source comprises a diode laser.

4. The laser therapy apparatus of claim 3 , wherein said diode laser comprises a grating stabilized broad-stripe or broad-area diode laser.

5. The laser therapy apparatus of claim 1 , wherein said optical component comprises an axicon lens.

6. The laser therapy apparatus of claim 1 , wherein said optical component comprises a tunable acoustic gradient index of refraction (TAG) lens.

7. A method for performing therapeutic treatment inside a biological tissue, the method comprising the steps of: providing a laser light source for producing a laser beam; providing a spatial light modulator for spatially modulating a phase of said laser beam to produce modulated laser beam; and delivering said modulated laser beam into the biological tissue; wherein said spatial light modulator is configured to cause said modulated laser beam to interfere constructively to produce a focus point inside the biological tissue for performing therapeutic treatment.

8. A laser therapy apparatus for performing therapeutic treatment inside a biological tissue, the laser therapy apparatus comprising: a laser light source for producing a laser beam; a spatial light modulator for spatially modulating a phase of said laser beam to produce a modulated laser beam; and means for delivering said modulated laser beam into the biological tissue; wherein said spatial light modulator is configured to cause said modulated laser beam to interfere constructively to produce a focus point inside the biological tissue for performing therapeutic treatment.

9. The laser therapy apparatus of claim 8 , wherein said spatial light modulator comprises a liquid crystal based spatial light modulator.

10. The laser therapy apparatus of claim 8 , wherein said spatial light modulator comprises a MEMS (Micro-Electro-Mechanical Systems) based spatial light modulator.

11. The laser therapy apparatus of claim 8 , further comprising an imaging sensor for monitoring the biological tissue and providing feedback control to said spatial light modulator for automatically controlling said focus point inside the biological tissue.

12. The laser therapy apparatus of claim 8 , wherein said laser light source comprises a solid state laser.

13. The laser therapy apparatus of claim 8 , wherein said laser light source comprises a diode laser.

14. The laser therapy apparatus of claim 13 , wherein said diode laser comprises a grating stabilized broad-stripe or broad-area diode laser.

Assignments (2)
SECURITY INTEREST Recorded Jan 3, 2024
From: LITECURE LLC
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 066162/0761 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2020
From: BWT PROPERTY, INC.; PRYOR, BRIAN; WANG, SEAN XIAOLU
To: LITECURE LLC
Reel/Frame 054129/0653 →