IP Library Granted Patent US 10,569,053
Granted Patent B2
US 10,569,053 · App. 15/826,528 · Granted Feb 25, 2020

Dual-lever bi-directional handle

Inventor: Pablo A. Gonzalez (Pomona, CA)
Assignee: BIOSENSE WEBSTER, INC.
A61M25/0136A61B1/008A61B1/0052A61B18/1492A61M25/0147A61B5/6852A61B2017/003A61M25/0029A61M2025/004A61M2025/0037A61M2025/015A61M2025/0161
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Quick Facts
Patent No.
US 10,569,053
App. No.
15/826,528
Filed
Nov 29, 2017
Granted
Feb 25, 2020
Kind
B2
Art Unit
3783
USPC
604/528
Abstract

An improved bi-directional steerable catheter is provided. The catheter generally comprises a catheter body, tip section and control handle. The catheter further comprises first and second puller wires extending from the control handle, through the catheter body and into the tip section. The control handle has deflection means for each puller wire that include a gear, and a carrier to which the proximal end of a puller wire is anchored. The gear is rotatably coupled to a lever controlled by an operator and the gear engages the carrier such that rotation of the gear by the lever results in longitudinal movement of the carrier, which results in deflection of the tip section.

Claims (40)

1. A bi-directional catheter comprising:

an elongated catheter body having proximal and distal ends;

a tip section comprising a flexible tubing having proximal and distal ends and first and second off axis lumens extending therethrough, the tip section being distal the catheter body and configured for bi-directional deflection in a first direction and a second direction generally opposite the first direction;

a first puller wire extending through the first off axis lumen of the tip section;

a second puller wire extending through the second off axis lumen of the tip section; and

a control handle mounted to the proximal end of the catheter body, the control handle comprising:

a first carrier connected to a proximal end of the first puller wire, the first carrier riding in a first dedicated channel having a first proximal wall and a first distal wall;

a second carrier connected to a proximal end of the second puller wire, the second carrier riding in a second dedicated channel having a second proximal wall and a second distal wall;

a gear in engagement with the first carrier and the second carrier, the gear configured to drive the first carrier and the second carrier distally or proximally in response to rotation of the gear to thereby deflect the tip section in the first direction or the second direction, wherein rotation of the gear results in generally equal but opposite translational movement of the carriers.

2. The catheter according to claim 1 , further comprising a lever configured for translational movement by an operator, the lever rotatably coupled to the gear.

3. The catheter according to claim 2 , wherein the lever extends through a longitudinal slot in a handle housing and terminates in a thumb control outside the handle housing.

4. The catheter according to claim 3 , wherein proximal movement of the thumb control results in proximal movement of the first puller wire and distal movement of the second puller wire thereby resulting in deflection of the tip section in the direction of the first off axis lumen in the tip section in which the first puller wire is anchored.

5. The catheter according to claim 3 , wherein distal movement of the thumb control results in distal movement of the first puller wire and proximal movement of the second puller wire thereby resulting in deflection of the tip section in the direction of the second off axis lumen in the tip section in which the second puller wire extends.

6. The catheter according to claim 1 , further comprising at least one first biasing member configured to act directly on the first carrier to bias the gear toward a resting position, wherein the at least one first biasing member is either fixedly attached to the first proximal wall of the first dedicated channel and a proximal end of the first carrier or fixedly attached to the first distal wall of the first dedicated channel and a distal end of the first carrier.

7. The catheter according to claim 6 , wherein the at least one first biasing member comprises:

a proximal first biasing member fixedly attached to the first proximal wall of the first dedicated channel and a proximal end of the first carrier; and

a distal first biasing member fixedly attached to the first distal wall of the first dedicated channel and a distal end of the first carrier.

8. The catheter according to claim 6 , further comprising at least one second biasing member configured to act directly on the second carrier to bias the gear toward a resting position, wherein the at least one second biasing member is either fixedly attached to the second proximal wall of the second dedicated channel and a proximal end of the second carrier or fixedly attached to the second distal wall of the second dedicated channel and a distal end of the second carrier.

9. The catheter according to claim 8 , wherein the at least one second biasing member comprises:

a proximal second biasing member fixedly attached to the second proximal wall of the second dedicated channel and a proximal end of the second carrier; and

a distal second biasing member fixedly attached to the second distal wall of the second dedicated channel and a distal end of the second carrier.

10. The catheter according to claim 1 , wherein distal ends of the first and second puller wires are anchored at different distal distances from the control handle.

11. The catheter according to claim 1 , wherein distal ends of the first and second puller wires are anchored at generally equal distal distances from the control handle.

12. A control handle for a bi-directional catheter, the control handle comprising:

a first carrier configured for connection to a proximal end of a first puller wire, the first carrier riding in a first dedicated channel having a first proximal wall and a first distal wall;

a second carrier configured for connection to a proximal end of a second puller wire, the second carrier riding in a second dedicated channel having a second proximal wall and a second distal wall; and

a gear in engagement with the first carrier and the second carrier, the gear configured to drive the first carrier and the second carrier distally or proximally in response to rotation of the gear, wherein rotation of the gear results in generally equal but opposite translational movement of the carriers.

13. The control handle according to claim 12 , further comprising a lever configured for translational movement by an operator, the lever fixedly attached to the gear.

14. The control handle according to claim 12 , further comprising at least one first biasing member configured to act directly on the first carrier to bias the gear toward a resting position, wherein the at least one first biasing member is either fixedly attached to the first proximal wall of the first dedicated channel and a proximal end of the first carrier or fixedly attached to the first distal wall of the first dedicated channel and a distal end of the first carrier.

15. The control handle according to claim 14 , wherein the at least one first biasing member comprises:

a proximal first biasing member fixedly attached to the first proximal wall of the first dedicated channel and a proximal end of the first carrier; and

a distal first biasing member fixedly attached to the first distal wall of the first dedicated channel and a distal end of the first carrier.

16. The control handle according to claim 14 , further comprising at least one second biasing member configured to act directly on the second carrier to bias the gear toward a resting position, wherein the at least one second biasing member is either fixedly attached to the second proximal wall of the second dedicated channel and a proximal end of the second carrier or fixedly attached to the second distal wall of the second dedicated channel and a distal end of the second carrier.

17. The control handle according to claim 16 , wherein the at least one second biasing member comprises:

a proximal second biasing member fixedly attached to the second proximal wall of the second dedicated channel and a proximal end of the second carrier; and

a distal second biasing member fixedly attached to the second distal wall of the second dedicated channel and a distal end of the second carrier.

18. The control handle according to claim 12 , further comprising:

a generally hollow handle housing; and

a gear housing within the generally hollow handle housing, the gear being housed in the gear housing, and the gear housing being in communication with the first and second dedicated channels.

19. The control handle according to claim 18 , wherein a lever extends through a longitudinal slot in the generally hollow handle housing and terminates in a thumb control outside the generally hollow handle housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2017
From: GONZALEZ, PABLO A.
To: BIOSENSE WEBSTER, INC.
Reel/Frame 044254/0367 →
Continuity (2)
Division 11323219 · Dec 30, 2005
Related Publication 20180078737A1 · Mar 22, 2018