IP Library Granted Patent US 12,178,416
Granted Patent B2
US 12,178,416 · App. 17/133,691 · Granted Dec 31, 2024

Tissue removal system

Inventors: Roy H. Sullivan (Marlborough, MA); Jessica Tina Schenck (Marlborough, MA); George Charles Michaels (Marlborough, MA)
Assignee: Hologic, Inc.
A61B10/0283A61B10/0275A61B10/0291A61B17/22031A61B2010/0208A61B17/42A61B2017/4216
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Quick Facts
Patent No.
US 12,178,416
App. No.
17/133,691
Granted
Dec 31, 2024
Kind
B2
Abstract

A tissue removal device includes a housing, an outer tube having a distal portion configured for transcervical insertion into a uterus, an inner tube slidably disposed within the outer tube lumen, a vacuum generation chamber disposed within the housing, a movable piston slidably disposed in the vacuum generation chamber, a collection chamber, a manual actuator moveably coupled to the housing and operatively coupled to the piston, and proximal and distal one-way valves. The outer tube has an outer tube lumen, a tissue in-take opening proximate a distal end thereof, and a proximal end coupled to the housing. The inner tube has an inner tube lumen extending from an open inner tube distal end to an open inner tube proximal end, the open inner tube distal end comprising a cutting edge configured to sever intrauterine tissue extending through the tissue in-take opening in the outer tube.

Claims (27)

1. A tissue removal device for acquiring one or more samples of intrauterine tissue, the tissue removal device comprising:

a housing;

an outer tube having a distal portion configured for transcervical insertion into a uterus, the outer tube having an outer tube lumen, a tissue in-take window proximate a closed distal end thereof, and a proximal end coupled to the housing;

an inner tube slidably disposed within the outer tube lumen, the inner tube having an inner tube lumen extending from an open inner tube distal end to an inner tube proximal end, wherein the open inner tube distal end severs intrauterine tissue extending through the tissue in-take window in the outer tube when the inner tube moves from a window-open position to a window-closed position;

an inner tube holder disposed around and coupled to a portion of the inner tube, the inner tube holder defining a helical groove on an outer surface thereof;

a cam follower formed on an inner surface of the housing, wherein the cam follower is disposed in the helical groove on the outer surface of the inner tube holder, the helical groove and cam follower being configured such that longitudinal movement of the inner tube relative to the housing causes rotational movement of the inner tube relative to the housing; and

a manual actuator moveably coupled to the housing and operatively coupled to the inner tube such that moving the manual actuator toward the housing moves the inner tube and the inner tube holder longitudinally relative to the housing, thereby moving the helical groove on the outer surface of the inner tube holder over the cam follower causing rotation of the inner tube holder and the inner tube relative to the housing.

2. The tissue removal device of claim 1 , wherein the open inner tube distal end comprises an annular cutting edge.

3. The tissue removal device of claim 1 , wherein the housing defines a cylindrical portion configured to support the inner tube.

4. The tissue removal device of claim 1 , wherein the helical groove and the cam follower are configured such that translating the inner tube holder from a proximal most position to a distal most position relative to the housing rotates the inner tube approximately twice around a longitudinal axis of the inner tube.

5. The tissue removal device of claim 1 , further comprising a spring operatively coupled to the inner tube, wherein movement of the manual actuator relative to the housing compresses the spring.

6. The tissue removal device of claim 1 , further comprising an external connector configured to pneumatically couple the device to an external vacuum source.

7. The tissue removal device of claim 1 , further comprising a specimen collection chamber in communication with the inner tube lumen.

8. The tissue removal device of claim 1 , further comprising a body disposed around and coupled to the inner tube proximal of the inner tube holder, wherein the manual actuator is operatively coupled to the body such that moving the manual actuator toward the housing moves the body longitudinally relative to the housing, thereby moving the respective inner tube and inner tube holder longitudinally relative to the housing.

9. A tissue removal device for acquiring one or more samples of intrauterine tissue, the tissue removal device comprising:

a housing;

an outer tube having a distal portion configured for transcervical insertion into a uterus, the outer tube having an outer tube lumen, a tissue in-take window proximate a closed distal end thereof, and a proximal end coupled to the housing;

an inner tube slidably disposed within the outer tube lumen, the inner tube having an inner tube lumen extending from an open inner tube distal end to an inner tube proximal end, wherein the open inner tube distal end severs intrauterine tissue extending through the tissue in-take window in the outer tube when the inner tube moves from a window open-position to a window-closed position;

a spring operatively coupled to the inner tube;

an inner tube holder disposed around and coupled to a portion of the inner tube, the inner tube holder defining a helical groove on an outer surface thereof;

a body disposed around and coupled to the inner tube proximal of the inner tube holder;

a cam follower formed on an inner surface of the housing, wherein the cam follower is disposed in the helical groove on the outer surface of the inner tube holder, the helical groove and cam follower being configured such that longitudinal movement of the inner tube relative to the housing causes rotational movement of the inner tube relative to the housing; and

a manual actuator moveably coupled to the housing and operatively coupled to the body such that moving the manual actuator toward the housing moves the respective body, inner tube, and inner tube holder longitudinally relative to the housing, thereby moving the helical groove over the cam follower on the inner surface of the housing causing rotation of the respective-inner tube holder and the inner tube relative to the housing.

10. The tissue removal device of claim 9 , wherein the housing defines a cylindrical portion configured to support the inner tube.

11. The tissue removal device of claim 9 , wherein the helical groove and the cam follower are configured such that translating the inner tube holder from a proximal most position to a distal most position relative to the housing rotates the inner tube approximately twice around a longitudinal axis of the inner tube.

12. The tissue removal device of claim 9 , wherein movement of the manual actuator relative to the housing compresses the spring.

13. The tissue removal device of claim 9 , wherein the manual actuator is operatively coupled to the body such that moving the manual actuator toward the housing moves the body longitudinally relative to the housing, thereby moving the respective inner tube and inner tube holder longitudinally relative to the housing.

Assignments (3)
SECURITY INTEREST Recorded Apr 8, 2026
From: BIOTHERANOSTICS, INC.; GEN-PROBE INCORPORATED; GEN-PROBE PRODESSE, INC.; CYTYC CORPORATION; SUROS SURGICAL SYSTEMS, INC.; GYNESONICS, INC.; BOLDER SURGICAL, LLC; FAXITRON BIOPTICS, LLC; HEALTH BEACONS, INC.; HOLOGIC, INC.
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 075462/0440 →
SECURITY INTEREST Recorded Oct 12, 2021
From: HOLOGIC, INC.; FAXITRON BIOPTICS, LLC; BIOTHERANOSTICS, INC.; GEN-PROBE INCORPORATED; GEN-PROBE PRODESSE, INC.
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 057787/0526 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 24, 2020
From: SULLIVAN, ROY H.; SCHENCK, JESSICA T.; MICHAELS, GEORGE C.
To: HOLOGIC, INC.
Reel/Frame 054745/0832 →
Continuity (4)
Continuation 15915409 · Mar 8, 2018
Continuation 15556599
Provisional Application 62255650 · Nov 16, 2015
Related Publication 20210186472A1 · Jun 24, 2021