IP Library Granted Patent US 8,211,012
Granted Patent B2
US 8,211,012 · App. 12/241,897 · Granted Jul 3, 2012

Tissue retractor system

Assignee: Aesculap Implant Systems, LLC
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Quick Facts
Patent No.
US 8,211,012
App. No.
12/241,897
Granted
Jul 3, 2012
Kind
B2
Abstract

A tissue retractor system includes first and second arms extending from a support assembly, and third and fourth arms extending from a support mechanism. Each arm includes a proximal span, a distal span, and a blade support between the proximal span and distal span. The retractor system features retractor units that can be used independently or in a nested arrangement. The system also includes instruments for inserting a spinal rod. A method for implanting a spinal rod through an incision includes the steps of inserting the spinal rod through a dividable tube, turning the rod subcutaneously toward a rod receiving anchor and advancing the rod subcutaneously toward the rod receiving anchor.

Claims (36)

1. A tissue retractor system for maintaining and adjusting the size of an incision during a minimally invasive surgical procedure, the tissue retractor system comprising:

a first arm extending from a support assembly, the first arm comprising a proximal span connected to the support assembly, a distal span and a blade support between the proximal span and the distal span;

a second arm extending from the support assembly, the second arm comprising a proximal span connected to the support assembly, a distal span and a blade support between the proximal span and the distal span;

a third arm extending from a support mechanism, the third arm comprising a proximal span connected to the support mechanism, a distal span and a blade support between the proximal span and the distal span; and

a fourth arm extending from the support mechanism, the fourth arm comprising a proximal span connected to the support mechanism, a distal span and a blade support between the proximal span and the distal span,

wherein the third and fourth arms extend generally perpendicularly to the first and second arms in a nested arrangement above the first and second arms, with the third arm free to move laterally relative to the distal spans of the first and second arms in a direction generally parallel to the first and second arms, and with the fourth arm free to move laterally relative to the proximal spans of the first and second arms in a direction generally parallel to the first and second arms.

2. The tissue retractor system of claim 1 , wherein the third and fourth arms each include an underside portion with recesses extending along the underside portion, the recesses receiving portions of the first and second arms.

3. The tissue retractor system of claim 2 , wherein each of the underside portions has a convex curvature.

4. The tissue retractor system of claim 1 , wherein the first, second, third and fourth arms intersect to form a generally rectangular opening.

5. The tissue retractor system of claim 4 , wherein at least one blade support comprises a trapezoidal blade slot adjacent the rectangular opening, the blade slot having a short side adjacent the rectangular opening and a long side positioned away from the rectangular opening.

6. The tissue retractor system of claim 1 , wherein the first and second arms each include a gliding surface on which the third and fourth arms rest, the gliding surface having a convex curvature.

7. The tissue retractor system of claim 1 , wherein at least one of the first, second, third and fourth arms comprise a proximal end with a pivot hinge, and is pivotable through an angle of at least ninety degrees.

8. The tissue retractor system of claim 1 , wherein at least one of the first, second, third and fourth arms includes a top-loading slot passing through said at least one of the first, second, third and fourth arms, the top-loading slot containing a retractor blade loaded into the slot from above the slot.

9. A tissue retractor system for maintaining and adjusting the size of an incision during a minimally invasive surgical procedure, the tissue retractor system comprising:

a first arm extending from a support assembly, the first arm comprising a proximal span connected to the support assembly, a distal span, and a blade support between the proximal span and distal span;

a second arm extending from the support assembly, the second arm comprising a proximal span connected to the support assembly, a distal span, and a blade support between the proximal span and distal span;

a third arm extending from a support mechanism, the third arm comprising a proximal span connected to the support mechanism, a distal span, and a blade support between the proximal span and distal span; and

a fourth arm extending from the support mechanism, the fourth arm comprising a proximal span connected to the support mechanism, a distal span, and a blade support between the proximal span and distal span,

wherein at least one of the proximal spans includes an in-line pivot mechanism, the in-line pivot mechanism including a cylindrical knob that is rotatable about a longitudinal axis of the knob to pivot the arm to which the knob is connected, and an internal lock inside the knob to fix the orientation of the arm to which the knob is connected after a rotation of the knob, and

wherein the third and fourth arms extend generally perpendicularly to the first and second arms in a nested arrangement above the first and second arms, with the third arm free to move laterally relative to the distal spans of the first and second arms in a direction generally parallel to the first and second arms, and with the fourth arm free to move laterally relative to the proximal spans of the first and second arms in a direction generally parallel to the first and second arms.

10. The tissue retractor system of claim 9 , wherein the third and fourth arms each include an underside portion with recesses extending along the underside portion, the recesses receiving portions of the first and second arms.

11. The tissue retractor system of claim 10 , wherein each of the underside portions has a convex curvature.

12. The tissue retractor system of claim 9 , wherein the first, second, third and fourth arms intersect to form a generally rectangular opening.

13. The tissue retractor system of claim 12 , wherein at least on of the first, second, third and fourth arms comprise a proximal end with a pivot hinge, and is pivotable through an angle of at least ninety degrees.

14. The tissue retractor system of claim 12 , wherein at least one blade support comprises a trapezoidal blade slot adjacent the rectangular opening, the blade slot having a short side adjacent the rectangular opening and a long side positioned away from the rectangular opening.

15. The tissue retractor system of claim 9 , wherein the support assembly includes a first lateral adjustment assembly connected with the first arm, the first lateral adjustment assembly operable to move the first arm relative to the second arm.

16. The tissue retractor system of claim 15 , wherein the support assembly includes a second lateral adjustment assembly connected with the second arm, the second lateral adjustment assembly operable to move the second arm relative to the first arm, the first and second lateral adjustment assemblies being independently operable.

17. The tissue retractor system of claim 9 , wherein the first and second arms each include a gliding surface on which the third and fourth arms rest, the gliding surface having a convex curvature.

18. A tissue retractor system for maintaining and adjusting the size of an incision during a minimally invasive surgical procedure, the tissue retractor system comprising:

a first arm extending from a support assembly, the first arm comprising a proximal span connected to the support assembly, a distal span and a blade support between the proximal span and the distal span;

a second arm extending from the support assembly, the second arm comprising a proximal span connected to the support assembly, a distal span and a blade support between the proximal span and the distal span;

a third arm extending from a support mechanism, the third arm comprising a proximal span connected to the support mechanism, a distal span and a blade support between the proximal span and the distal span; and

a fourth arm extending from the support mechanism, the fourth arm comprising a proximal span connected to the support mechanism, a distal span and a blade support between the proximal span and the distal span,

wherein the third and fourth arms extend generally perpendicularly to the first and second arms in a nested arrangement, above the first and second arms with the third arm free to move laterally relative to the distal spans of the first and second arms in a direction generally parallel to the first and second arms, and with the fourth arm free to move laterally relative to the proximal spans of the first and second arms in a direction generally parallel to the first and second arms,

wherein the support assembly includes a first lateral adjustment assembly connected with the first arm, the first lateral adjustment assembly operable to move the first arm relative to the second arm, and

wherein the support assembly includes a second lateral adjustment assembly connected with the second arm, the second lateral adjustment assembly operable to move the second arm relative to the first arm, the first and second lateral adjustment assemblies being independently operable.

Assignments (2)
CHANGE OF NAME Recorded Jun 4, 2012
From: AESCULAP IMPLANT SYSTEMS, INC.
To: AESCULAP IMPLANT SYSTEMS, LLC
Reel/Frame 028318/0418 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2009
From: WING, CHARLES; BEUTLER, WILLIAM J.; MCMURRAY, WALTER J.; COLE, JEFFREY; BUSS, DONALD A.; HUGHETT, JAMES DAVID; TOMPKINS, JEFFREY S.
To: AESCULAP IMPLANT SYSTEMS, INC.
Reel/Frame 022255/0751 →
Continuity (1)
Related Publication 20100081885A1 · Apr 1, 2010