IP Library Granted Patent US 8,900,262
Granted Patent B2
US 8,900,262 · App. 14/290,852 · Granted Dec 2, 2014

Device for dissection of subcutaneous tissue

Inventors: Robert L Clark, III (Hayward, CA); James E. Chomas (Boulder, CO); Adnan I. Merchant (Fremont, CA); Ben F. Brian, III (Menlo Park, CA)
Assignee: Ulthera, Inc.
A61B17/32A61B2017/320052
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Quick Facts
Patent No.
US 8,900,262
App. No.
14/290,852
Granted
Dec 2, 2014
Kind
B2
Abstract

A dermatological skin treatment device is provided. The device comprises a handpiece and a cutting tool, wherein the tool is inserted through the conduit and percutaneously inserted into a tissue disposed within a recessed area of the handpiece. The device and method cut the fibrous structures under the skin that cause cellulite at an angle substantially parallel to the surface of the skin and replace these structures with a non-cellulite forming structure by deploying a highly fibrous mesh through a single needle hole to create a highly fibrous layer directly or through wound healing processes.

Claims (35)

1. A system for dissection of subcutaneous tissue, comprising:

a handpiece comprising a tissue engaging chamber defining a treatment region in which a target tissue comprising dermis, epidermis and subcutaneous tissue may be positioned, the tissue engaging chamber having a top comprising an adjustable lid,

the handpiece further comprising a port configured to allow elevation of the target tissue into the chamber in the treatment region relative to surrounding tissue,

the handpiece further comprising a conduit for receiving a distal end of a tissue cutting device, thereby enabling the tissue cutting device to access the treatment region through the tissue engaging chamber, the conduit configured to enable the tissue cutting device to be pivoted in an arc about the conduit;

a tissue cutting device having a proximal end and a distal end, the distal end of the tissue cutting device being positionable within the chamber and within a subcutaneous region within the treatment region for dissecting target tissue;

the distal end of the tissue cutting device capable of movement within a predetermined shape within the treatment region; and

the top of the tissue engaging chamber having an apposition surface and being configured to contact target tissue elevated within the chamber with the apposition surface, the adjustable lid configured to adjust a depth of the distal end of the tissue cutting device relative to the apposition surface.

2. The dissection system of claim 1 , further comprising a guidance track that constrains the movement of the distal end of the tissue cutting device to be within said predetermined shape.

3. The dissection system of claim 1 , wherein the tissue cutting device further comprises a guide pin, the guide pin being configured to engage a guidance track.

4. The dissection system of claim 1 , further comprising a guidance track that constrains the movement of the distal end of the tissue cutting device to be within said predetermined shape, wherein the tissue cutting device further comprises a guide pin configured to engage the guidance track, wherein the engagement of the guide pin with the guidance track prevents the tissue cutting device from being lifted off the guidance track thereby causing the tissue cutting device to cut within a plane at a depth defined by the adjustable lid, and wherein said depth is between 4 mm and 20 mm below the apposition surface.

5. The dissection system of claim 1 , further comprising a motor module operably connected to the tissue cutting device, the motor module being configured to drive the tissue cutting device to cut tissue in the treatment region.

6. The dissection system of claim 5 , wherein the motor module comprises a reciprocating motor and reciprocates the tissue cutting device to cut tissue in the treatment region.

7. The dissection system of claim 1 , wherein the tissue cutting device comprises a blade.

8. The dissection system of claim 1 , wherein the port is connectable to a vacuum source, wherein application of vacuum pressure via the port draws the target tissue into contact with the apposition surface.

9. The dissection system of claim 1 , wherein the conduit further comprises a membrane to reduce leakage from the tissue engaging chamber via the conduit.

10. The dissection system of claim 9 , wherein the membrane is self-sealing.

11. A system for dissection of subcutaneous tissue, comprising:

a handpiece comprising a tissue engaging chamber comprising an adjustable lid that at least partially defines a recessed area into which target tissue may be positioned, thereby defining a treatment region;

a tissue cutting module comprising a housing and tissue cutting blade and configured to be operably coupled to the handpiece, the tissue cutting blade comprising a proximal end and a distal end,

the handpiece further comprising a seal configured to allow at least a portion of the distal end of the tissue cutting blade to pass into the recessed area and into target tissue; and

the tissue engaging chamber comprising a port configured to allow elevation, relative to surrounding tissue, of the target tissue into the recessed area of chamber and into contact with an apposition surface of the adjustable lid,

wherein the adjustable lid allows adjustment of a depth of the tissue cutting device relative to the apposition surface,

the distal end of the tissue cutting blade being positionable into the treatment region and capable of movement within a predetermined shape within the treatment region.

12. The dissection system of claim 11 , further comprising a guidance track that is configured to define the predetermined shape in which the distal end of the cutting blade is capable of movement.

13. The dissection system of claim 12 , wherein the housing of the tissue cutting module comprises a guide pin that engages the guidance track to define the movement of the distal end of the cutting blade within the predetermined shape within the treatment region.

14. The dissection system of claim 11 , wherein movement of distal end of the tissue cutting blade allows the cutting of fibrous septae within the treatment region.

15. The dissection system of claim 11 , wherein movement of distal end of the tissue cutting blade is controlled by a motor module operably engaged with said tissue cutting module.

16. A system for dissection of subcutaneous tissue, comprising:

a handpiece comprising a tissue engaging chamber defining a treatment region in which target tissue may be positioned, the tissue engaging chamber having a top comprising an adjustable lid configured to allow adjustable elevation of the target tissue into the chamber in the treatment region, relative to surrounding tissue,

the handpiece further comprising an aperture configured to allow elevation of the target tissue into the tissue engaging chamber in the treatment region relative to surrounding tissue,

the handpiece further comprising a conduit for receiving a distal end of a tissue cutting device, thereby enabling the tissue cutting device to access the target tissue in the tissue engaging chamber and to pivot about the conduit; and

a tissue cutting device comprising a tissue cutting blade having a proximal end and a distal end, the distal end of the tissue cutting blade positionable into the chamber and within a subcutaneous region in the treatment region for dissecting the target tissue, wherein the distal end of the tissue cutting blade is capable of movement within a predetermined shape within the treatment region,

wherein the adjustable lid comprises an apposition surface which the elevated target tissue contacts and wherein adjustment of the adjustable lid allows adjusting a depth of the distal end of the tissue cutting blade relative to the apposition surface.

17. The dissection system of claim 16 , wherein the adjustable lid comprises a threaded engagement between the adjustable lid and the handpiece, and wherein rotation of the adjustable lid adjusts the degree of elevation of the target tissue into the chamber in the treatment region, relative to surrounding tissue.

18. The dissection system of claim 16 , further comprising a guidance track operably connected to the handpiece, wherein the guidance track defines the movement of the distal end of the tissue cutting blade with the predetermined shape, and wherein the guidance track is operably connected to the handpiece by screws, clips, or combinations thereof.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2014
From: CLARK, ROBERT L., III; CHOMAS, JAMES E.; MERCHANT, ADNAN I.; BRIAN, BEN F., III
To: CABOCHON AESTHETICS, INC.
Reel/Frame 033130/0659 →
MERGER Recorded Jun 18, 2014
From: CABOCHON AESTHETICS, INC.
To: ULTHERA, INC.
Reel/Frame 033132/0937 →
Continuity (6)
Continuation 13772718 · Feb 21, 2013
Continuation 13712429 · Dec 12, 2012
Continuation 12787382 · May 25, 2010
Provisional Application 61232385 · Aug 7, 2009
Provisional Application 61286750 · Dec 15, 2009
Related Publication 20140277026A1 · Sep 18, 2014