IP Library Granted Patent US 10,898,174
Granted Patent B2
US 10,898,174 · App. 16/214,442 · Granted Jan 26, 2021

Method of using a surgical tissue retractor

Inventor: Jason Blain (Encinitas, CA)
Assignee: Spinal Elements, Inc.
A61B17/0206A61B5/0488A61B17/0218A61B2017/0256A61B2017/2837
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Quick Facts
Patent No.
US 10,898,174
App. No.
16/214,442
Granted
Jan 26, 2021
Kind
B2
Abstract

A method of performing an operation, e.g. a spinal operation, on a patient using a retractor comprising a pair of blade assemblies which are adapted to open about a set of axes that are not parallel to a third spatial axis, and further comprising a pair of arms, which are adapted to move the pair of blade assemblies apart from one another in the third spatial axis. In the method, the blade assemblies are closed to assume a low profile, inserted into a relatively small incision, and stretched apart from each other, thereby stretching the skin about the incision to form an aperture longer than the incision. The blade assemblies are then opened by rotating the blades about the set of axes, stretching the skin around the incision in a second direction that is substantially perpendicular to the first direction (i.e. the direction of the incision.).

Claims (39)

1. A retractor comprising:

a first arm comprising a first blade extending along a first longitudinal axis;

a first adjuster in mechanical communication with the first blade, the first adjuster configured to rotate the first blade about a first rotation axis;

a second arm comprising a second blade extending along a second longitudinal axis;

a second adjuster in mechanical communication with the second blade, the second adjuster configured to rotate the second blade about a second rotation axis;

a third blade configured to slide relative to a probe when the probe is inserted into a patient; and

an actuator configured to move the first arm and second arm about a trajectory transverse to the first rotation axis and the second rotation axis,

wherein the movement of the first arm and second arm is independent of the rotation of the first blade about the first rotation axis and the rotation of the second blade about the second rotation axis.

2. The retractor of claim 1 , wherein at least one of the first blade or the second blade is a flat blade.

3. The retractor of claim 1 , wherein at least one blade is removable.

4. The retractor of claim 1 , wherein the trajectory is perpendicular to the first rotation axis.

5. The retractor of claim 1 , wherein the rotation of the first blade about the first rotation axis is independent of the rotation of the second blade about the second rotation axis.

6. The retractor of claim 1 , further comprising the probe.

7. The retractor of claim 6 , wherein the probe has a rectangular cross-section.

8. The retractor of claim 6 , wherein the probe comprises at least one electrode.

9. A retractor comprising:

a first arm comprising a first blade extending along a first longitudinal axis;

a first adjuster in mechanical communication with the first blade, the first adjuster configured to rotate about a single axis, the first adjuster configured to rotate the first blade only clockwise and counterclockwise about a first rotation axis;

a second arm comprising a second blade extending along a second longitudinal axis;

a second adjuster in mechanical communication with the second blade, the second adjuster adapted to rotate about a single axis, the second adjuster configured to rotate the second blade only clockwise and counterclockwise about a second rotation axis; and

an actuator configured to move the first arm and second arm to separate the first blade and the second blade,

wherein the movement of the first arm and second arm is independent of the rotation of the first blade and the second blade,

wherein the retractor is configured to slide relative to a probe when the probe is inserted into an anchorable location of a patient.

10. The retractor of claim 9 , further comprising a locking mechanism configured to lock a separated position of the first blade and the second blade.

11. The retractor of claim 10 , wherein the first adjuster is configured to be rotated when the separated position is locked.

12. The retractor of claim 9 , wherein the actuator allows movement about a pivot.

13. The retractor of claim 9 , wherein the actuator is configured to move the first arm and second arm equally.

14. The retractor of claim 9 , further comprising a locking mechanism configured to prevent movement of the actuator.

15. A retractor comprising:

a first arm comprising a first blade extending along a first longitudinal axis;

a first adjuster in mechanical communication with the first blade, the first adjuster configured to rotate the first blade about a fixed first rotation axis, the first rotation axis extending longitudinally and the first blade extending longitudinally;

a second arm comprising a second blade extending along a second longitudinal axis;

a second adjuster in mechanical communication with the second blade, the second adjuster adapted to rotate the second blade about a fixed second rotation axis, the second rotation axis extending longitudinally and the second blade extending longitudinally; and

an actuator configured to move the first arm and second arm to separate the first blade and the second blade,

wherein the retractor is configured to slide along a probe toward a patient.

16. The retractor of claim 15 , wherein the first longitudinal axis and the first rotation axis are offset.

17. The retractor of claim 15 , wherein the first longitudinal axis and the first rotation axis are parallel.

18. The retractor of claim 15 , wherein the first rotation axis and the second rotation axis are configured to be parallel in a low profile insertion configuration.

19. The retractor of claim 15 , wherein the first longitudinal axis and the second longitudinal axis are configured to be parallel in a low profile insertion configuration.

Assignments (4)
SECURITY INTEREST Recorded May 31, 2024
From: SPINAL ELEMENTS, INC.; CUSTOM SPINE ACQUISITION, INC.; OMNI ACQUISITION INC.
To: PERCEPTIVE CREDIT HOLDINGS IV, LP
Reel/Frame 067596/0295 →
CHANGE OF NAME Recorded Apr 17, 2020
From: AMENDIA, INC.
To: SPINAL ELEMENTS, INC.
Reel/Frame 052919/0070 →
MERGER Recorded Apr 10, 2020
From: SPINAL ELEMENTS, INC.
To: AMENDIA, INC.
Reel/Frame 052372/0207 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2020
From: BLAIN, JASON
To: SPINAL ELEMENTS, INC.
Reel/Frame 051783/0228 →
Cited By (4)
US 12,226,087 US 12,226,088 US 12,232,713 US 12,465,346