Dissection handpiece and method for reducing the appearance of cellulite
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.
1. A tissue treatment system, comprising:
a handpiece having a tissue engaging chamber defining a treatment region in which target tissue may be positioned, the tissue engaging chamber having a top and being configured to elevate the target tissue into the chamber in the treatment region relative to surrounding tissue;
an energy emitting tool movably coupled to a guidance track so that a distal end of the energy emitting tool is positionable into the chamber and in the treatment region for treating the target tissue;
the guidance track operably connected to the handpiece, wherein the guidance track is configured to constrain a portion of the energy emitting tool to move within a predetermined area such that the distal end of the energy emitting tool moves relative to the top within a predetermined shape within the treatment region; and
the top has an apposition surface and the target tissue is configured to be elevated into contact with the apposition surface wherein the top comprises a reversible lid for adjusting a depth of the distal end of the energy emitting tool relative to the apposition surface.
2. The tissue treatment system of claim 1 , wherein the energy emitting tool moves along a surface that is parallel to the apposition surface for treating the target tissue in the treatment region.
3. The tissue treatment system of claim 1 , wherein a guide pin is attached to the energy emitting tool, the guide pin configured to engage the guidance track so that the energy emitting tool is constrained to move within the predetermined area.
4. The tissue treatment system of claim 1 , wherein the guidance track comprises one or more channels forming a pattern, the energy emitting tool being constrained to move within the pattern.
5. The tissue treatment system of claim 1 , wherein the distal end of the tool comprises a tissue cutting device.
6. The tissue treatment system of claim 5 , wherein the tissue cutting device comprises a blade.
7. The tissue treatment system of claim 5 , further comprising a motor controlled module coupled to the tool which imparts reciprocating motion to the cutting device.
8. The tissue treatment system of claim 1 , wherein the distal end of the energy emitting tool comprises a radiofrequency tool.
9. The tissue treatment system of claim 8 , wherein the radiofrequency tool comprises a radiofrequency electrode.
10. The tissue treatment system of claim 1 , wherein the distal end of the tool comprises a laser.
11. A tissue treatment system, comprising:
a handpiece having a tissue engaging chamber defining a treatment region in which target tissue may be positioned, the tissue engaging chamber having a top and being configured to elevate the target tissue into the chamber in the treatment region relative to surrounding tissue;
an energy emitting tool having a distal end and being positionable inside the tissue engaging chamber such that the distal end of the energy emitting tool is moveable in the treatment region;
a guidance track operably connected to the handpiece;
an interfacing structure configured to movably couple the energy emitting tool to the guidance track, wherein the guidance track is configured to constrain a portion of the energy emitting tool to move within a predetermined area such that the distal end of the energy emitting tool moves relative to the top within a predetermined shape within the treatment region and
the top has an apposition surface and the target tissue is configured to be elevated into contact with the apposition surface wherein the top comprises a reversible lid for adjusting a depth of the distal end of the energy emitting tool relative to the apposition surface.
12. The tissue treatment system of claim 11 , wherein the interfacing structure includes a guide pin, the guide pin configured to engage the guidance track so that the energy emitting tool is constrained to move within the predetermined area.
13. The tissue treatment system of claim 11 , wherein the distal end of the tool comprises a tissue cutting device.
14. The tissue treatment system of claim 11 , wherein the guidance track comprises one or more channels defining a pattern for treating cellulite in the treatment region.
15. The tissue treatment system of claim 11 , wherein the energy emitting tool is constrained to move along a surface that is generally parallel to the top for treating the target tissue in the treatment region.
16. The tissue treatment system of claim 11 , further comprising a port in the chamber connectable to a vacuum source, wherein the chamber may be evacuated in order to draw the target tissue into contact with the top.
17. The tissue treatment system of claim 16 , wherein the chamber has an aperture for receiving the energy emitting tool, the aperture having a resilient seal in order to minimize leakage around the energy emitting tool.