IP Library Granted Patent US 11,304,718
Granted Patent B2
US 11,304,718 · App. 14/922,609 · Granted Apr 19, 2022

System for tissue dissection and retraction

Inventor: John A. Cox (San Clemente, CA)
A61B17/320016A61B90/30A61B17/320725A61B2017/00367A61B2017/00907A61B2017/2902A61B2017/2927A61B2017/320044A61B2090/309
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,304,718
App. No.
14/922,609
Granted
Apr 19, 2022
Kind
B2
Abstract

A system for tissue dissection and retraction is disclosed herein. A tissue dissection assembly generally comprises an elongate body shaft, an actuation member movable relative to the elongate body shaft, and at least one dissector arm member having at least a first end attached to the elongate body shaft, wherein the at least one dissector arm member is adapted to reconfigure within a plane from a low profile to an expanded profile when urged via the actuation member, and wherein the at least one dissector arm is further adapted to dissect tissue within the plane. In use, the assembly dissects tissue within the plane typically by advancing the elongate body shaft into the tissue region where the dissector arm member or members are then reconfigured within the plane from its low profile to its expanded profile to thereby dissect the tissue region along the plane.

Claims (26)

1. A tissue manipulation assembly, comprising:

an elongate body shaft;

an actuation member movable relative to the elongate body shaft; and

a first arm member and a second arm member each having at least a distal end attached to a distal tip of the elongate body shaft via a pivot or pinned connection, wherein each arm member is positioned along the elongate body shaft opposite to one another such that each arm member reconfigures radially whereby each arm member is correspondingly configured within a single plane from a low profile to an expanded curved or arcuate planar profile when urged via the actuation member such that the assembly reconfigures along the single plane,

wherein each arm member is further positioned along the elongate body shaft such that each arm member is reconfigurable from the low profile where an entirety of each arm member resides against the elongate body shaft and into an overextended arcuate configuration extending distally beyond the assembly such that each arm member presents a curved outer surface located distally beyond where the distal end of each arm member is attached to the distal tip of the elongate body shaft and where the overextend arcuate configuration is shaped to inhibit bending of the overextended arcuate configuration outside the single plane, and

wherein each arm member has a feature which increases frictional resistance against tissue contacting the arm members.

2. The tissue manipulation assembly of claim 1 wherein the tissue manipulation assembly is configured for tissue retraction.

3. The tissue manipulation assembly of claim 1 wherein the tissue manipulation assembly is configured for tissue dissection.

4. The tissue manipulation assembly of claim 1 further comprising a handle assembly coupled to a proximal end of the elongate body shaft for actuating a reconfiguration of each arm member.

5. The tissue manipulation assembly of claim 4 wherein the handle assembly is adapted to actuate each arm member in a plurality of intermediate configurations between the low profile and the expanded curved or arcuate planar profile.

6. The tissue manipulation assembly of claim 1 wherein each arm member is adapted to simultaneously reconfigure within the single plane from the low profile to the expanded curved or arcuate planar profile.

7. The tissue manipulation assembly of claim 1 wherein each arm member defines a tapered or arcuate outer surface.

8. The tissue manipulation assembly of claim 1 wherein the feature comprises a coating or covering which increases the frictional resistance.

9. The tissue manipulation assembly of claim 1 wherein the elongate body has a non-uniform cross-section along its length.

10. The tissue manipulation assembly of claim 1 wherein the elongate body comprises a section which is configured to receive the arm members such that a low profile cross-section is presented for insertion into a body.

11. A tissue manipulation assembly, comprising:

an elongate body shaft;

an actuation member movable relative to the elongate body shaft; and

at least one arm member having a distal end attached to a distal tip of the elongate body shaft via a pivot or pinned connection,

wherein the at least one arm member is positioned along the elongate body shaft such that the at least one arm member reconfigures radially whereby the at least one arm member is configured within a single plane from a low profile to an expanded curved or arcuate planar profile when urged via the actuation member such that the assembly reconfigures along the single plane,

wherein the at least one arm member is further positioned along the elongate body shaft such the at least one arm member is reconfigurable from the low profile where an entirety of the at least one arm member resides against the elongate body shaft and into an overextended arcuate configuration extending distally beyond the assembly such that each arm member presents a curved outer surface located distally beyond where the distal end of each arm member is attached to the distal tip of the elongate body shaft and where the overextend arcuate configuration is shaped to inhibit bending of the overextended arcuate configuration outside the single plane, and

wherein the at least one arm member has a feature which increases frictional resistance against tissue contacting the at least one arm member.

12. The tissue manipulation assembly of claim 11 further comprising a handle assembly coupled to a proximal end of the elongate body shaft for actuating a reconfiguration of the at least one arm member.

13. The tissue manipulation assembly of claim 12 wherein the handle assembly is adapted to actuate the at least one arm member in a plurality of intermediate configurations between the low profile and the expanded curved or arcuate planar profile.

14. The tissue manipulation assembly of claim 11 wherein the at least one arm member defines a tapered or arcuate outer surface.

15. The tissue manipulation assembly of claim 11 wherein the a feature comprises a coating or covering which increases the frictional resistance.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2024
From: RETRACTION LIMITED
To: MICROLINE SURGICAL, INC.
Reel/Frame 066002/0619 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2022
From: COX, JOHN A.
To: RETRACTION LIMITED
Reel/Frame 061454/0732 →
Continuity (3)
Continuation 13220461 · Aug 29, 2011
Continuation 11174253 · Jul 1, 2005
Related Publication 20160038172A1 · Feb 11, 2016
Cited By (1)
US 12,357,365