IP Library Granted Patent US 11,623,071
Granted Patent B2
US 11,623,071 · App. 16/772,111 · Granted Apr 11, 2023

Guide wire activation mechanism and proximal actuation mechanism

Inventors: Aharon Friedman (Haifa, IL); Matan Gedulter (Givat Ela, IL); Moshe Miller (Jerusalem, IL); Ronen Eckhouse (Shimshit, IL)
Assignee: RAPID MEDICAL LTD.
A61M25/09A61M25/0147A61M25/0169A61M2025/09075A61M2025/09116A61M2025/09125
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Quick Facts
Patent No.
US 11,623,071
App. No.
16/772,111
Granted
Apr 11, 2023
Kind
B2
Abstract

An intraluminal guide wire may include an elongated shaft extending between a distal and a proximal end. The guide wire may include a user actuation segment positioned proximal to the proximal end of the shaft and configured for movement relative to the shaft. The guide wire may include a core wire affixed to the user actuation segment and the distal end of the shaft. The guide wire may also include an inner member having a proximal end situated at least partially within and fixed relative to the user actuation segment and a distal end situated partially within the shaft, the core wire passing through the inner member. The guide wire may be configured with a distal segment of the inner member within the shaft exhibiting a friction-based restraint on movement within the shaft. The friction-based restraint on movement may be a frictional force between the inner member and the shaft.

Claims (27)

1. An intraluminal guide wire, comprising:

a hollow elongated shaft having a proximal end and a distal end, the hollow elongated shaft extending between the distal end and the proximal end;

a user actuation segment situated proximally to the proximal end of the hollow elongated shaft, wherein the user actuation segment is configured to move relative to the hollow elongated shaft;

a core wire extending between the user actuation segment and the distal end of the hollow elongated shaft; and

an inner member comprising:

a proximal end situated at least partially within, and fixed relative to, the user actuation segment, and

a distal end configured for placement at least partially within, and for axial movement relative to, the hollow elongated shaft,

wherein the core wire passes through the inner member,

wherein a locking segment of the inner member configured for placement within the hollow elongated shaft is configured to exhibit a friction-based restraint on movement within the hollow elongated shaft, the friction-based restraint on movement being a frictional force between an outer surface of the inner member and an inner surface of the hollow elongated shaft,

wherein the locking segment of the inner member includes at least one bend, such that when the locking segment of the inner member is inserted within the hollow elongated shaft, the at least one bend of the inner member is configured to exert the frictional force upon the inner surface of the hollow elongated shaft, and

wherein an outer diameter of the inner member at the at least one bend is smaller than the diameter of the inner surface of the hollow elongated shaft.

2. The intraluminal guide wire of claim 1 ,

wherein the hollow elongated shaft includes a deflectable segment that encompasses the distal end of the hollow elongated shaft.

3. The intraluminal guide wire of claim 1 , wherein the locking segment of the inner member is sufficiently flexible such that the at least one bend is configured to be at least partially straightened when the locking segment of the inner member is inserted within the hollow elongated shaft.

4. The intraluminal guide wire of claim 1 , wherein the locking segment of the inner member includes a plurality of bends, each bend of the plurality of bends being configured to exert the frictional force upon separate portions of the inner surface of the hollow elongated shaft.

5. The intraluminal guide wire of claim 1 , further comprising:

a connection member fixed relative to the user actuation segment and extending from the proximal end of the user actuation segment.

6. The intraluminal guide wire of claim 1 , wherein an outer diameter of the user actuation segment is smaller than or substantially equal to an outer diameter of the hollow elongated shaft.

7. The intraluminal guide wire of claim 1 , further comprising:

an outer handle fixed relative to the user actuation segment, wherein the outer handle is configured to receive the proximal end of the hollow elongated shaft.

8. The intraluminal guide wire of claim 7 , wherein at least a portion of the core wire extends within and is secured relative to the outer handle.

9. The intraluminal guide wire of claim 1 , wherein the locking segment of the inner member is configured to have a helical arrangement, a zigzag arrangement, or a sinusoidal arrangement.

10. The intraluminal guide wire of claim 1 , wherein the inner member is constructed from a superelastic material.

11. The intraluminal guide wire of claim 2 , wherein the core wire is affixed to the deflectable segment.

12. The intraluminal guide wire of claim 2 , wherein movement of the user actuation segment causes deflection of the deflectable segment.

13. The intraluminal guide wire of claim 5 , wherein the connection member is connected to, or integrally formed with, the inner member.

14. The intraluminal guide wire of claim 5 , wherein the connection member includes at least one bend, such that the at least one bend of the connection member is configured to exert a second frictional force upon an inner surface of a second hollow elongated shaft.

Assignments (2)
SECURITY INTEREST Recorded Feb 5, 2026
From: RAPID MEDICAL LTD.
To: LEUMI PARTNERS LTD.
Reel/Frame 073697/0603 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2020
From: FRIEDMAN, AHARON; GEDULTER, MATAN; MILLER, MOSHE; ECKHOUSE, RONEN
To: RAPID MEDICAL LTD.
Reel/Frame 052930/0465 →
Continuity (2)
Provisional Application 62597888 · Dec 12, 2017
Related Publication 20210085928A1 · Mar 25, 2021