IP Library Granted Patent US 12,582,407
Granted Patent B2
US 12,582,407 · App. 18/030,766 · Granted Mar 24, 2026

Devices and methods for applying a hemostatic clip assembly

Inventor: Daniel P. Damato (Boston, MA)
Assignee: Conmed Corporation
A61B17/1285A61B17/00234A61B17/122A61B2017/003A61B2017/00473A61B2017/00477A61B2017/2936
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Quick Facts
Patent No.
US 12,582,407
App. No.
18/030,766
Granted
Mar 24, 2026
Kind
B2
Abstract

A device for applying a hemostatic clip assembly includes a proximal delivery catheter having a proximal handle assembly, a catheter body defining a longitudinal axis and extending distally from the proximal handle assembly, and a distal clip assembly removably connected to a distal end of the catheter body. The distal clip assembly includes a distal clip housing, a jaw assembly and a jaw adapter yoke. The jaw assembly has a pair of cooperating jaw members fixed to the distal clip housing by a first pin oriented orthogonally relative to the longitudinal axis. The jaw member is configured to rotate about the first pin and about the longitudinal axis. Each jaw member includes a proximal body portion and a distal end effector, wherein the proximal body portion includes a respective cam slot and a rear opening connected to the cam slot and defining at least one proximal cantilever jaw arm.

Claims (36)

1 . A device for applying a hemostatic clip assembly, the device comprising:

a proximal delivery catheter including a proximal handle assembly and an elongated catheter body extending distally from the proximal handle assembly, the elongated catheter body defining a longitudinal axis; and

a distal clip assembly removably connected to a distal end of the elongated catheter body, the distal clip assembly including a distal clip housing, a jaw assembly having a pair of cooperating jaw members fixed to the distal clip housing by a first pin, the first pin oriented orthogonally relative to the longitudinal axis, and a jaw adapter yoke operatively connected to the jaw members, wherein the proximal delivery catheter is configured and adapted to transmit linear motion along the longitudinal axis and torsion about the longitudinal axis to at least a portion of the distal clip assembly, wherein at least one of the jaw members is configured and adapted to rotate about the first pin and to rotate about the longitudinal axis, wherein each jaw member includes a proximal body portion and a distal end effector, wherein the proximal body portion of each jaw member includes a respective cam slot and a rear opening connected to the cam slot and defining at least one proximal cantilever jaw arm, and wherein the distal clip assembly includes a second pin connecting between the jaw members and the jaw adapter yoke, wherein the proximal body portion of each jaw member includes a pivot aperture configured and adapted to receive the first pin, and wherein each respective cam slot is configured and adapted to receive the second pin.

2 . The device as recited in claim 1 , wherein the distal clip housing includes a pair of spaced apart arms defining a slot configured and adapted to provide clearance for respective proximal portions of the jaw members to rotate relative the first pin.

3 . The device as recited in claim 1 , wherein the second pin is configured and adapted to translate within the cam slots to move axially relative to the distal clip housing and the jaw assembly to move the jaw members between the open configuration where respective distal tips of the jaw members are moved away from one another, the closed configuration where the respective distal tips of the jaw members are approximated towards one another to grasp tissue, and a locked configuration.

4 . The device as recited in claim 1 , wherein each cam slot includes a proximal locking neck projecting into the cam slot defining a proximal locking area, wherein the jaw members are in the locked configuration when the second pin is proximal relative to the proximal locking neck in the proximal locking area.

5 . The device as recited in claim 4 , wherein the proximal locking neck includes at least one of a protrusion projecting into the cam slot or a tapered portion.

6 . The device as recited in claim 1 , wherein the jaw adapter yoke includes a proximal receiving portion and the proximal delivery catheter includes a spring release having a distal portion configured and adapted to be received within the proximal receiving portion of the jaw adapter yoke to transmit axial and rotational force to the jaw adapter yoke, wherein a portion of the spring release between a terminal distal end of the spring release and the outwardly extending flange portion has a constant diameter.

7 . The device as recited in claim 1 , wherein the proximal delivery catheter includes a spring tube between a proximal end of the distal clip assembly and a distal end of the catheter body.

8 . The device as recited in claim 7 , wherein the spring tube includes at least one cantilever arm removably coupled to the distal clip housing.

9 . The device as recited in claim 8 , wherein the at least one cantilever arm includes an inwardly extending flange that removably engages with a circumferential slot defined about a periphery of a proximal end of the distal clip housing.

10 . The device as recited in claim 9 , wherein the proximal delivery catheter includes a spring release positioned at least partially within the spring tube, wherein the spring tube includes an inward projection, wherein the spring release includes an outwardly extending flange portion configured and adapted to interact with the inward projection of the spring tube to selectively deflect the at least one cantilever arm of the spring tube and release the inwardly extending flange of the at least one cantilever arm from the circumferential slot of the distal clip housing.

11 . A hemostatic clip assembly, the assembly comprising:

a distal clip housing defining a longitudinal axis;

a jaw assembly having a pair of cooperating jaw members fixed to the distal clip housing by a first pin, the first pin oriented orthogonally relative to the longitudinal axis, wherein each jaw member includes a proximal body portion and a distal end effector, wherein the proximal body portion of each jaw member includes a respective cam slot and a rear opening connected to the cam slot and defining at least one proximal cantilever jaw arm;

a jaw adapter yoke operatively connected to the jaw members, wherein the jaw adapter yoke is configured and adapted to translate axially along the longitudinal axis and rotate about the longitudinal axis, wherein at least one of the jaw members is configured and adapted to rotate about the first pin and to rotate about the longitudinal axis; and

a second pin connecting between the jaw members and the jaw adapter yoke, wherein each jaw member includes a proximal body portion and a distal end effector, wherein the portion of each jaw member includes a pivot aperture configured and adapted to receive the first pin, and a respective cam slot configured and adapted to receive the second pin.

12 . The hemostatic clip assembly as recited in claim 11 , wherein the jaw adapter yoke includes a proximal receiving portion configured and adapted to receive therewithin a distal portion of a spring release of a proximal delivery catheter to transmit axial and rotational force to the jaw adapter yoke, wherein a portion of the spring release between a terminal distal end of the spring release and the outwardly extending flange portion has a constant diameter.

13 . A hemostatic clip assembly, the assembly comprising:

a distal clip housing defining a longitudinal axis;

a jaw assembly having a pair of cooperating jaw members fixed to the distal clip housing by a first pin, the first pin oriented orthogonally relative to the longitudinal axis, wherein each jaw member includes a proximal body portion and a distal end effector, wherein the proximal body portion of each jaw member includes a respective cam slot and a rear opening connected to the cam slot and defining at least one proximal cantilever jaw arm; and

a jaw adapter yoke operatively connected to the jaw members, wherein the jaw adapter yoke is configured and adapted to translate axially along the longitudinal axis and rotate about the longitudinal axis, wherein at least one of the jaw members is configured and adapted to rotate about the first pin and to rotate about the longitudinal axis,

wherein the jaw adapter yoke includes a proximal receiving portion configured and adapted to receive therewithin a distal portion of a spring release of a proximal delivery catheter to transmit axial and rotational force to the jaw adapter yoke, wherein a portion of the spring release between a terminal distal end of the spring release and the outwardly extending flange portion has a constant diameter.

14 . A device for applying a hemostatic clip assembly, the device comprising:

a proximal delivery catheter including a proximal handle assembly and an elongated catheter body extending distally from the proximal handle assembly, the elongated catheter body defining a longitudinal axis; and

a distal clip assembly removably connected to a distal end of the elongated catheter body, the distal clip assembly including a distal clip housing, a jaw assembly having a pair of cooperating jaw members fixed to the distal clip housing by a first pin, the first pin oriented orthogonally relative to the longitudinal axis, and a jaw adapter yoke operatively connected to the jaw members, wherein the proximal delivery catheter is configured and adapted to transmit linear motion along the longitudinal axis and torsion about the longitudinal axis to at least a portion of the distal clip assembly, wherein at least one of the jaw members is configured and adapted to rotate about the first pin and to rotate about the longitudinal axis, wherein each jaw member includes a proximal body portion and a distal end effector, wherein the proximal body portion of each jaw member includes a respective cam slot and a rear opening connected to the cam slot and defining at least one proximal cantilever jaw arm, and wherein the jaw adapter yoke includes a proximal receiving portion and the proximal delivery catheter includes a spring release having a distal portion configured and adapted to be received within the proximal receiving portion of the jaw adapter yoke to transmit axial and rotational force to the jaw adapter yoke, wherein a portion of the spring release between a terminal distal end of the spring release and the outwardly extending flange portion has a constant diameter.

15 . The device as recited in claim 8 , wherein the proximal delivery catheter includes a drive wire coupled to a proximal portion of the spring release to transmit linear and rotational motion from the drive wire to the jaw adapter yoke.

16 . The device as recited in claim 15 , wherein the proximal handle assembly includes an actuation portion coupled to a proximal end of the drive wire, and a grasping portion, wherein the actuation portion is configured and adapted to translate relative to the grasping portion to apply axial force to the drive wire.

17 . The device as recited in claim 14 , wherein the proximal delivery catheter includes a spring tube between a proximal end of the distal clip assembly and a distal end of the catheter body, wherein the spring tube includes at least one cantilever arm removably coupled to the distal clip housing, wherein the at least one cantilever arm includes an inwardly extending flange that removably engages with a circumferential slot defined about a periphery of a proximal end of the distal clip housing, and wherein the proximal delivery catheter includes a spring release positioned at least partially within the spring tube, wherein the spring tube includes an inward projection, wherein the spring release includes an outwardly extending flange portion configured and adapted to interact with the inward projection of the spring tube to selectively deflect the at least one cantilever arm of the spring tube and release the inwardly extending flange of the at least one cantilever arm from the circumferential slot of the distal clip housing.

18 . The device as recited in claim 17 , wherein the distal clip assembly includes a second pin connecting between the jaw members and the jaw adapter yoke, wherein the proximal body portion of each jaw member includes a pivot aperture configured and adapted to receive the first pin, and wherein each respective cam slot is configured and adapted to receive the second pin.

19 . A device for applying a hemostatic clip assembly, the device comprising:

a proximal delivery catheter including a proximal handle assembly and an elongated catheter body extending distally from the proximal handle assembly, the elongated catheter body defining a longitudinal axis; and

a distal clip assembly removably connected to a distal end of the elongated catheter body, the distal clip assembly including a distal clip housing, a jaw assembly having a pair of cooperating jaw members fixed to the distal clip housing by a first pin, the first pin oriented orthogonally relative to the longitudinal axis, and a jaw adapter yoke operatively connected to the jaw members, wherein the proximal delivery catheter is configured and adapted to transmit linear motion along the longitudinal axis and torsion about the longitudinal axis to at least a portion of the distal clip assembly, wherein at least one of the jaw members is configured and adapted to rotate about the first pin and to rotate about the longitudinal axis, wherein each jaw member includes a proximal body portion and a distal end effector, wherein the proximal body portion of each jaw member includes a respective cam slot and a rear opening connected to the cam slot and defining at least one proximal cantilever jaw arm, wherein the proximal delivery catheter includes a spring tube between a proximal end of the distal clip assembly and a distal end of the catheter body, wherein the spring tube includes at least one cantilever arm removably coupled to the distal clip housing, wherein the at least one cantilever arm includes an inwardly extending flange that removably engages with a circumferential slot defined about a periphery of a proximal end of the distal clip housing, and wherein the proximal delivery catheter includes a spring release positioned at least partially within the spring tube, wherein the spring tube includes an inward projection, wherein the spring release includes an outwardly extending flange portion configured and adapted to interact with the inward projection of the spring tube to selectively deflect the at least one cantilever arm of the spring tube and release the inwardly extending flange of the at least one cantilever arm from the circumferential slot of the distal clip housing.

20 . The device as recited in claim 19 , wherein the spring release includes a distal portion configured and adapted to be received within a receiving portion of the jaw adapter yoke to transmit linear and rotational motion to the jaw adapter yoke.

21 . The device as recited in claim 20 , wherein the distal portion of the spring release is divided into at least two tines, wherein each tine has a mating surface selectively engageable with an inner surface of the receiving portion of the jaw adapter yoke.

22 . The device as recited in claim 21 , wherein each tine is configured and adapted to deflect inwardly and release from the receiving portion when an axial force in a proximal direction is applied to the spring release.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2025
From: DAMATO, DANIEL P.
To: CONMED CORPORATION
Reel/Frame 073102/0988 →
SECURITY INTEREST Recorded Jul 21, 2025
From: CONMED CORPORATION; BIOREZ, INC.; BUFFALO FILTER LLC; IN2BONES USA, LLC; LINVATEC CORPORATION; SURGIQUEST, INC.; VIKING SYSTEMS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 072097/0762 →
Continuity (3)
Provisional Application 63091349 · Oct 14, 2020
Provisional Application 63089097 · Oct 8, 2020
Related Publication 20230404593A1 · Dec 21, 2023
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