IP Library Granted Patent US 9,895,560
Granted Patent B2
US 9,895,560 · App. 14/740,092 · Granted Feb 20, 2018

Methods for rejuvenating skin by heating tissue for cosmetic treatment of the face and body

Inventors: Peter G. Barthe (Phoenix, AZ); Michael H. Slayton (Tempe, AZ); Inder Raj S. Makin (Mesa, AZ)
Assignee: Guided Therapy Systems, LLC
A61N7/02A61B5/7405A61B8/08A61B8/0858A61B8/13A61B8/14A61B8/4281A61B8/4444A61B8/4461A61B8/4483A61B8/461A61B8/469A61B2090/378A61B2562/046A61N2007/0008A61N2007/0034A61N2007/0052A61N2007/0078A61N2007/0082A61N2007/027
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Quick Facts
Patent No.
US 9,895,560
App. No.
14/740,092
Granted
Feb 20, 2018
Kind
B2
Abstract

Methods for treating skin and subcutaneous tissue with energy such as ultrasound energy are disclosed. In various embodiments, ultrasound energy is applied at a region of interest to affect tissue by cutting, ablating, micro-ablating, coagulating, or otherwise affecting the subcutaneous tissue to conduct numerous procedures that are traditionally done invasively in a non-invasive manner. Methods of lifting sagging tissue on a face and/or neck are described. Treatment with heat is provided in several embodiments.

Claims (29)

1. A method of rejuvenating skin, comprising:

placing an ultrasonic probe on a skin surface, wherein the skin surface is located over a subcutaneous tissue;

delivering diffuse ultrasound energy from the ultrasonic probe to the subcutaneous tissue for a heating effect;

delivering focused therapeutic ultrasound energy from the ultrasonic probe to the subcutaneous tissue,

thereby treating the subcutaneous tissue at a depth under the skin surface to rejuvenate the skin.

2. The method of claim 1 , wherein the ultrasonic probe further comprises an imaging element to image the subcutaneous tissue at the depth under the skin surface.

3. The method of claim 1 , wherein the heating effect is a pretreatment heating effect.

4. The method of claim 1 ,

wherein delivering the focused therapeutic ultrasound energy comprises delivering ultrasound energy from a single transduction element,

wherein the transduction element comprises a piezoelectrically active material, wherein the piezoelectrically active material is selected from the group consisting of: a piezoelectric ceramic, a crystal, a plastic, a composite material, lithium niobate, lead titanate, barium titanate, and lead metaniobate.

5. The method of claim 1 , wherein the focused therapeutic ultrasound energy has a frequency in a range of 3 MHz to 100 MHz.

6. The method of claim 1 , wherein the focused therapeutic ultrasound energy thermally treats a wrinkle on the skin surface.

7. The method of claim 1 , wherein the focused therapeutic ultrasound energy is configured for producing a tissue effect, wherein the tissue effect is any one or more of the group consisting of: ablative, hemostatic, and diathermic tissue effects.

8. A method of non-invasive skin rejuvenation, comprising:

acoustically coupling an ultrasound probe on a skin surface proximate a region comprising a tissue;

delivering ultrasound energy to the region for a pretreatment heating effect;

delivering focused ultrasound energy to the region to treat the tissue at a depth under the skin surface to rejuvenate skin.

9. The method of claim 8 , further comprising imaging the tissue under the skin surface.

10. The method of claim 8 , wherein the depth is up to 9 mm under the skin surface.

11. The method of claim 8 , wherein the tissue comprises any one or more of: collagen, fat, and skin.

12. The method of claim 8 , wherein the pretreatment heating effect comprises a diffused heating effect.

13. The method of claim 8 , wherein the focused ultrasound energy thermally treats a wrinkle on the skin surface.

14. The method of claim 8 , wherein the focused ultrasound energy has a frequency in a range of 3 MHz to 100 MHz.

15. The method of claim 8 , wherein the focused ultrasound energy has a frequency of 7 MHz.

16. The method of claim 8 , wherein the focused ultrasound energy has a frequency of 10 MHz.

17. The method of claim 8 , wherein the focused ultrasound energy is configured for a tissue effect, wherein the tissue effect is any one or more of the group consisting of: thermal and non-thermal streaming, cavitational, hydrodynamic, ablative, diathermic, and resonance-induced tissue effects.

18. The method of claim 8 , wherein the focused ultrasound energy has an ablative tissue effect.

19. The method of claim 8 , wherein delivering the focused ultrasound energy comprises delivering ultrasound energy from a transduction element in the ultrasound probe, wherein the transduction element comprises a piezoelectrically active material.

20. The method of claim 19 , wherein the piezoelectrically active material is selected from the group consisting of: a piezoelectric ceramic, a crystal, a plastic, a composite material, lithium niobate, lead titanate, barium titanate, and lead metaniobate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2015
From: BARTHE, PETER G.; SLATYON, MICHAEL H.; MAKIN, INDER RAJ S.
To: GUIDED THERAPY SYSTEMS, LLC
Reel/Frame 035920/0057 →
Continuity (13)
Continuation 13965741 · Aug 13, 2013
Continuation 13835635 · Mar 15, 2013
Continuation 13494856 · Jun 12, 2012
Continuation In Part 11857989 · Sep 19, 2007
Continuation In Part 12028636 · Feb 8, 2008
Continuation In Part 11163151 · Oct 6, 2005
Continuation In Part 11163148 · Oct 6, 2005
Continuation In Part 12437726 · May 8, 2009
Continuation 10950112 · Sep 24, 2004
Provisional Application 60826199 · Sep 19, 2006
Provisional Application 60616755 · Oct 6, 2004
Provisional Application 60616754 · Oct 6, 2004
Related Publication 20150283408A1 · Oct 8, 2015