IP Library Granted Patent US 11,832,874
Granted Patent B2
US 11,832,874 · App. 15/801,687 · Granted Dec 5, 2023

Tissue extraction devices and methods

Inventors: Aaron Germain (Campbell, CA); Kyle Klein (San Jose, CA); Michael D. Walker (San Francisco, CA); Benedek Orczy-Timko (Budapest, HU); Balazs Lesko (Budapest, HU)
Assignee: MINERVA SURGICAL, INC.
A61B18/1482A61B17/32002A61B17/3205A61B17/320016A61B18/1485A61B18/18A61B18/042A61B18/14A61B50/10A61B2017/00269A61B2017/32004A61B2017/320028A61B2017/320064A61B2018/0072A61B2018/00083A61B2018/00196A61B2018/00559A61B2018/00595A61B2018/00601A61B2018/122A61B2018/1213A61B2018/142A61B2018/1412A61B2018/1475A61B2217/005A61B2218/007
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Quick Facts
Patent No.
US 11,832,874
App. No.
15/801,687
Granted
Dec 5, 2023
Kind
B2
Abstract

A tissue cutting device has an outer sleeve with a distal window and an inner cutting sleeve which moves past the window to cut tissue. The inner cutting sleeve has a lumen which may have a larger proximal diameter than distal diameter. A perimeter of the window may comprise a dielectric material. A distal edge of the inner sleeve may be displaced inwardly.

Claims (29)

1. A tissue extraction system, comprising:

a hysteroscope including a handle coupled to an elongate shaft, the hysteroscope having a working channel and one or more fluid channels extending through the elongate shaft;

a resection device including an elongated shaft assembly configured to extend through the working channel, the elongated shaft assembly including an outer sleeve having a tissue-receiving window through a side wall of the outer sleeve into a lumen of the outer sleeve, and an inner sleeve slidably disposed within the lumen of the outer sleeve and configured to resect tissue extending through the tissue-receiving window into the lumen of the outer sleeve by sliding the inner sleeve axially relative to the outer sleeve from a window open configuration to a window closed configuration; and

a fluid management system including a pump configured to supply an inflow fluid through the hysteroscope, wherein the fluid management system includes a negative pressure source in fluid communication with the inner sleeve and configured to extract resected tissue therethrough;

wherein the inner sleeve includes an electrode element disposed at least partially within the inner sleeve and extending distally therefrom.

2. The tissue extraction system of claim 1 , wherein the resection device includes a terminal chamber defined by a distal portion of the lumen of the outer sleeve and a distal tip fixedly attached to the outer sleeve.

3. The tissue extraction system of claim 2 , wherein the resection device includes a flow passageway configured to at least partially supply pressurized fluid to the terminal chamber.

4. The tissue extraction system of claim 3 , wherein the flow passageway is formed in the outer sleeve.

5. The tissue extraction system of claim 3 , wherein the flow passageway is formed in the inner sleeve.

6. The tissue extraction system of claim 3 , wherein the flow passageway is formed by a space between the inner sleeve and the outer sleeve.

7. The tissue extraction system of claim 1 , wherein the inner sleeve is configured to axially reciprocate within and relative to the outer sleeve.

8. The tissue extraction system of claim 7 , wherein the resection device includes a motor drive for axially reciprocating the inner sleeve relative to the outer sleeve.

9. The tissue extraction system of claim 1 , further comprising an RF energy source electrically coupled to the electrode element.

10. The tissue extraction system of claim 1 , wherein a tissue extraction lumen extending within the inner sleeve has proximal and distal cross-sections that differ from each other.

11. The tissue extraction system of claim 10 , wherein the distal cross-section, adjacent a distal end of the inner sleeve, is smaller than the proximal cross-section.

12. The tissue extraction system of claim 10 , wherein the negative pressure source is coupled to a proximal end of the tissue extraction lumen.

13. The tissue extraction system of claim 1 , wherein a ceramic collar is disposed radially outward of the electrode element.

14. The tissue extraction system of claim 13 , wherein the ceramic collar is disposed distal of a distal end of the inner sleeve.

15. The tissue extraction system of claim 13 , wherein the electrode element extends distal of the ceramic collar.

16. The tissue extraction system of claim 1 , wherein the electrode element defines a tissue-resecting edge that is displaced radially inward from an outer diameter of the inner sleeve.

17. A tissue extraction system, comprising:

a hysteroscope including a handle coupled to an elongate shaft, the hysteroscope having a working channel and one or more fluid channels extending through the elongate shaft;

a resection device including an elongated shaft assembly configured to extend through the working channel, the elongated shaft assembly including an outer sleeve having a tissue-receiving window through a side wall of the outer sleeve into a lumen of the outer sleeve, and an inner sleeve slidably disposed within the lumen of the outer sleeve and configured to axially translate in a distal direction relative to the outer sleeve from a window open configuration to a window closed configuration;

wherein the resection device includes an RF energy source coupled to an annular electrode disposed within a distal end of the inner sleeve and extending distally of the distal end of the inner sleeve;

wherein axial translation of the inner sleeve relative to the outer sleeve from the window open configuration to the window closed configuration resects tissue extending through the tissue-receiving window into the lumen of the outer sleeve; and

a fluid management system including a pump configured to supply an inflow fluid through the hysteroscope, wherein the fluid management system includes a negative pressure source in fluid communication with the inner sleeve and configured to extract resected tissue therethrough.

18. The tissue extraction system of claim 17 , wherein a distal edge of the annular electrode is disposed proximal of the tissue-receiving window in the window open configuration and the distal edge of the annular electrode is disposed distal of the tissue-receiving window in the window closed configuration.

19. The tissue extraction system of claim 17 , wherein the RF energy source is configured to operate at selected parameters to generate a plasma around a distal edge of the annular electrode.

20. The tissue extraction system of claim 17 , wherein an inner diameter of the annular electrode is less than an inner diameter of the inner sleeve.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2026
From: MINERVA SURGICAL, INC.
To: AXORA MEDICAL, INC.
Reel/Frame 075561/0141 →
RELEASE OF SECURITY INTEREST Recorded Feb 5, 2026
From: CANADIAN IMPERIAL BANK OF COMMERCE
To: MINERVA SURGICAL, INC.
Reel/Frame 074721/0585 →
SECURITY INTEREST Recorded Jan 30, 2026
From: AXORA MEDICAL, INC.
To: SYMBIOTIC CAPITAL AGENCY LLC, AS ADMINISTRATIVE AGENT AND COLLATERAL AGENT
Reel/Frame 074537/0617 →
SECURITY INTEREST Recorded Oct 8, 2021
From: MINERVA SURGICAL, INC.
To: CANADIAN IMPERIAL BANK OF COMMERCE
Reel/Frame 057758/0137 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2020
From: BOSTON SCIENTIFIC SCIMED, INC.
To: MINERVA SURGICAL, INC.
Reel/Frame 053265/0675 →
Continuity (5)
Continuation 14982593 · Dec 29, 2015
Continuation 13442686 · Apr 9, 2012
Provisional Application 61501438 · Jun 27, 2011
Provisional Application 61474164 · Apr 11, 2011
Related Publication 20180132930A1 · May 17, 2018