IP Library Granted Patent US 12,349,939
Granted Patent B2
US 12,349,939 · App. 17/870,689 · Granted Jul 8, 2025

Systems and methods for tissue capture and removal

Inventors: Steven W. Kim (Los Altos, CA); Joseph N. Jones (Boise, ID); Alexey Salamini (Mountain View, CA)
Assignee: CLARIA MEDICAL, INC.
A61B17/42A61B17/221A61B2017/00287A61B2017/00876A61B2017/2215A61B2017/320024A61B2017/320775A61B2017/4216A61B2090/0807
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Quick Facts
Patent No.
US 12,349,939
App. No.
17/870,689
Granted
Jul 8, 2025
Kind
B2
Abstract

Components, systems and kits for capturing and removing tissue from mammalian bodies include a tissue container that may be introduced into a body cavity and within which a tissue specimen may be placed, cut and removed from the body cavity. Methods of using these components, systems and kits are also described.

Claims (25)

1. A tissue containment and removal system, comprising:

a tissue container including an opening, an interior volume, and a composite multiple layer structure that includes a watertight layer and a reinforcement member which is resistant to cutting or puncturing;

a tissue cutter including a distal end, a central lumen which extends from the distal end to a proximal portion of the tissue cutter and which is configured for pulling morcellated tissue therethrough and out of the proximal portion of the tissue cutter, and a cutter blade disposed on the distal end;

a cannula which is at least partially disposable through the opening and within the interior volume of the tissue container, the cannula including a central lumen in which the tissue cutter is configured to be disposed and positioned with an edge of the cutter blade extending distally of a distal end of the cannula and with the tissue container remaining open to the outside during morcellation of tissue by the cutter blade within the interior volume of the tissue container; and

at least one mechanical stop which is disposed on the tissue cutter and which is used to position the edge of the cutter blade distal of the distal tip of the cannula during morcellation by up to about 50.0 mm.

2. The tissue containment and removal system of claim 1 wherein the reinforcement member includes metal wires.

3. The tissue containment and removal system of claim 1 wherein the reinforcement member includes a metal mesh.

4. The tissue containment and removal system of claim 1 wherein the reinforcement member includes a series of metallic linkages.

5. The tissue containment and removal system of claim 1 wherein the reinforcement member includes a curved cross-sectional profile having a radius of curvature that is configured to optimize its radial stiffness and resistance to lateral bending or rolling up against the radius while being relatively flexible in the opposite direction.

6. The tissue containment and removal system of claim 1 wherein the reinforcement member has a thickness of about 0.1 mm to about 4.0 mm.

7. The tissue containment and removal system of claim 1 wherein the composite multiple layer structure of the tissue container comprises a bi-layer construction wherein the watertight layer comprises an outer layer and the reinforcement member comprises an inner layer.

8. The tissue containment and removal system of claim 1 wherein the composite multiple layer structure of the tissue container is impermeable to the transmission or leakage of biological cells.

9. The tissue containment and removal system of claim 1 wherein the tissue container comprises an opening having a diameter of about 50 mm to about 400 mm.

10. The tissue containment and removal system of claim 1 wherein the tissue container comprises a size of about 300 mm by 300 mm by 400 mm.

11. The tissue containment and removal system of claim 1 wherein the tissue container further comprises tabs extending from a nominal surface thereof.

12. The tissue containment and removal system of claim 1 further comprising a tissue grasper at least partially disposable within the tissue container interior.

13. The tissue containment and removal system of claim 12 wherein the tissue grasper is at least partially disposable within and axially movable through the central lumen of the tissue cutter.

14. The tissue containment and removal system of claim 12 wherein the tissue grasper is at least partially disposable within and axially movable through the central lumen of the cannula.

15. The tissue containment and removal system of claim 1 wherein the tissue cutter comprises a cylindrical structure with a rotating cutter blade.

16. A tissue removal system, comprising:

a tissue cutter including a distal end, a central lumen which extends from the distal end to a proximal portion of the tissue cutter, which is configured for axial movement of a grasper therethrough, and which is configured for pulling morcellated tissue therethrough and out of the proximal portion of the tissue cutter, and a cutter blade disposed on the distal end thereof;

a cannula including a central lumen in which the tissue cutter is configured to be disposed and positioned with an edge of the cutter blade extending distally of a distal end of the cannula; and

at least one mechanical stop which is disposed on the tissue cutter and which is used to position the edge of the cutter blade distal of the distal tip of the cannula during morcellation by up to about 50.0 mm.

17. The tissue removal system of claim 16 further comprising a tissue grasper which is at least partially disposable within and axially movable through the central lumen of the tissue cutter.

18. The tissue removal system of claim 16 wherein the tissue cutter comprises a cylindrical structure with a rotating cutter blade.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2022
From: KIM, STEVEN W.; JONES, JOSEPH N.; SALAMINI, ALEXEY
To: CLARIA MEDICAL, INC.
Reel/Frame 061464/0327 →
Continuity (6)
Continuation 16882140 · May 22, 2020
Division 16169884 · Oct 24, 2018
Continuation PCTUS2017029162 · Apr 24, 2017
Provisional Application 62419342 · Nov 8, 2016
Provisional Application 62326836 · Apr 25, 2016
Related Publication 20220361920A1 · Nov 17, 2022
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