IP Library Granted Patent US 10,098,757
Granted Patent B2
US 10,098,757 · App. 14/210,094 · Granted Oct 16, 2018

Bodiless bone fusion device, apparatus and method

Inventors: Joseph N. Logan (Trumbull, CT); Gary R. McLuen (Port Townsend, WA); Daniel R. Baker (Seattle, WA)
Assignee: Neuropro Technologies Inc.
A61F2/447A61F2002/304A61F2002/30266A61F2002/30401A61F2002/30411A61F2002/30504A61F2002/30505A61F2002/30556A61F2002/30563A61F2002/30565A61F2002/30579A61F2002/30785A61F2002/30825A61F2002/30904
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Quick Facts
Patent No.
US 10,098,757
App. No.
14/210,094
Granted
Oct 16, 2018
Kind
B2
Abstract

A bodiless bone fusion method, apparatus and device for insertion between bones that are to be fused together and/or in place of one or more of the bones, such as, for example, the vertebrae of a spinal column. The bodiless bone fusion device comprises one or more extendable plates, one or more extending blocks in communication with the extendable plates, one or more positioning elements for adjusting the extendable plates by manipulating the extending blocks, and one or more support panels for holding the positioning elements and guiding the extendable plates. The plates are able to be advantageously positioned in the confined space between the vertebrae to help brace the device until the bone has fused.

Claims (24)

1. A bodiless bone fusion device for insertion into a desired location comprising:

an extending mechanism including a plurality of extending blocks all mechanically coupled with a single body of a positioning element such that rotation of the positioning element causes the plurality of extending blocks to move with respect to the positioning element;

a first plate having a first body:

a second plate having a second body separate and distinct from the first body, the first and second plates straddling the extending mechanism and mechanically coupled with the plurality of extending blocks such that when the plurality of extending blocks move with respect to the positioning element, the plates move along a path with respect to each other between a retracted position in which the plates are adjacent to each other to an extended position in which the plates are spread apart from and do not directly contact each other, wherein the plates are sized such that at least a portion of a perimeter of the plates about the path align with an outermost perimeter of the device about the path, wherein the extending blocks move away from each other to opposite ends of the single body of the positioning element when causing the plates to move to the extended position, and further wherein the extending blocks directly contact and support opposite ends of both of the plates when in the extended position; and

one or more biasing elements physically coupled with the first plate and the second plate and positioned such that in the extended position the biasing elements extend from the first plate to the second plate through a gap between the first plate and the second plate, and further wherein the one or more biasing elements apply a force resisting the movement of the plates from the retracted position to the extended position.

2. The device of claim 1 , wherein the plates are sized such that the entirety of the perimeter of the plates about the path align with the outermost perimeter of the device about the path.

3. The device of claim 1 , wherein the one or more biasing elements have a shape selected from the group consisting of a ring, a C-shape and a ring-shaped coil.

4. The device of claim 1 , further comprising a plurality of support panels coupled with the extending mechanism, wherein at least one of the support panels comprises a pair of grip tabs that protrude from sides of the support panel into a pair of grip apertures formed by the plates when the plates are in the retracted position.

5. A bodiless bone fusion device for insertion into a desired location comprising:

an extending mechanism including a plurality of extending blocks mechanically coupled with a positioning element such that rotation of the positioning element causes the plurality of extending blocks to move with respect to the positioning element;

a first plate having a first body;

a second plate having a second body separate and distinct from the first body, the first and second plates straddling the extending mechanism and mechanically coupled with the plurality of extending blocks such that when the plurality of extending blocks move with respect to the positioning element, the plates move along a path with respect to each other between a retracted position in which the plates are in direct contact with each other to an extended position in which the plates are spread apart from and do not directly contact each other, wherein the plates are sized such that at least a portion of a perimeter of the plates about the path align with an outermost perimeter of the device about the path; and

one or more biasing elements physically coupled with the first plate and the second plate and positioned such that in the extended position the biasing elements extend from the first plate to the second plate through a gap between the first plate and the second plate, and further wherein the one or more biasing elements apply a force resisting the movement of the plates from the retracted position to the extended position.

6. The device of claim 5 , wherein the plates are sized such that the entirety of the perimeter of the plates about the path align with the outermost perimeter of the device about the path.

7. The device of claim 5 , wherein the one or more biasing elements have a shape selected from the group consisting of a ring, a C-shape and a ring-shaped coil.

8. The device of claim 5 , further comprising a plurality of support panels coupled with the extending mechanism, wherein at least one of the support panels comprises a pair of grip tabs that protrude from sides of the support panel into a pair of grip apertures formed by the plates when the plates are in the retracted position.

9. A bodiless bone fusion device for insertion into a desired location comprising:

an extending mechanism including a plurality of extending blocks mechanically coupled with a single body of a positioning element such that rotation of the positioning element causes the plurality of extending blocks to move with respect to the positioning element;

a first plate having a first body;

a second plate having a second body separate and distinct from the first body, the first and second plates straddling the extending mechanism and mechanically coupled with the plurality of extending blocks such that when the plurality of extending blocks move with respect to the positioning element, the plates move along a path with respect to each other between a retracted position in which the plates are in contact with each other to an extended position in which the plates are spread apart from and do not directly contact each other, wherein the plates are sized such that at least a portion of a perimeter of the plates about the path align with an outermost perimeter of the device about the path;

one or more biasing elements physically coupled with both of the plates and positioned such that in the extended position the biasing elements extend from the first plate to the second plate through a gap outside the plates, and further wherein the one or more biasing elements apply a force resisting the movement of the plates from the retracted position to the extended position; and

a plurality of support panels coupled to opposite sides of the single body of the extending mechanism, wherein at least one of the support panels comprises a pair of grip tabs that protrude from sides of the support panel into a pair of grip apertures formed by the plates when the plates are in the retracted position.

10. The device of claim 9 , wherein the plates are sized such that the entirety of the perimeter of the plates about the path align with the outermost perimeter of the device about the path.

11. The device of claim 9 , wherein the one or more biasing elements have a shape selected from the group consisting of a ring, a C-shape and a ring-shaped coil.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Aug 4, 2025
From: U.S. EAGLE FEDERAL CREDIT UNION
To: NEUROPRO SPINAL JAXX INC.; NEUROPRO TECHNOLOGIES, INC.
Reel/Frame 071922/0846 →
CORRECTIVE ASSIGNMENT TO CORRECT THE PUNCTUATION IN THE NAME OF THE CONVEYING PARTY, ADD "RD NE" TO ADDRESS OF RECEIVING PARTY AND REMOVE PATENT NUMBER 10092422 PREVIOUSLY RECORDED ON REEL 48572 FRAME 847. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTEREST. Recorded May 7, 2025
From: NEUROPRO TECHNOLOGIES, INC.
To: U.S. EAGLE FEDERAL CREDIT UNION
Reel/Frame 071218/0812 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE PUNCTUATION IN THE NAME OF THE CONVEYING PARTY, ADD "RD NE" TO ADDRESS OF RECEIVING PARTY AND REMOVE PATENT NUMBER 10092422 PREVIOUSLY RECORDED ON REEL 48576 FRAME 281. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTEREST. Recorded May 7, 2025
From: NEUROPRO TECHNOLOGIES, INC.
To: U.S. EAGLE FEDERAL CREDIT UNION
Reel/Frame 071218/0855 →
SECURITY INTEREST Recorded Mar 19, 2025
From: NEUROPRO TECHNOLOGIES, INC.
To: U.S. EAGLE FEDERAL CREDIT UNION
Reel/Frame 070560/0047 →
SECURITY INTEREST Recorded Mar 12, 2019
From: NEUROPRO TECHNOLOGIES INC
To: U.S. EAGLE FEDERAL CREDIT UNION
Reel/Frame 048572/0847 →
SECURITY INTEREST Recorded Mar 12, 2019
From: NEUROPRO TECHNOLOGIES INC
To: U.S. EAGLE FEDERAL CREDIT UNION
Reel/Frame 048576/0281 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2015
From: LOGAN, JOSEPH N.; MCLUEN, GARY R.; BAKER, DANIEL R.
To: NEUROPRO TECHNOLOGIES, INC.
Reel/Frame 037344/0455 →
Continuity (3)
Provisional Application 61794789 · Mar 15, 2013
Provisional Application 61858505 · Jul 25, 2013
Related Publication 20140277500A1 · Sep 18, 2014
Cited By (21)
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