IP Library Granted Patent US 9,649,142
Granted Patent B2
US 9,649,142 · App. 14/643,448 · Granted May 16, 2017

Modular head assembly

Inventors: Robert L. Doubler (Monroe, MI); John E. Hammill, Sr. (Maumee, OH)
Assignee: Spinal LLC
A61B17/8605A61B2560/0443
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Quick Facts
Patent No.
US 9,649,142
App. No.
14/643,448
Granted
May 16, 2017
Kind
B2
Abstract

A low profile orthopedic device is used to fix and stabilize bones to correct anomalies in skeletal structure occurring naturally or by trauma. Bone screws are screwed into bones by application of torque. Connectors are attached to the anchored bone screws. Each connector includes a clamp and a compression ring. A connecting rod connects several connectors together. The clamps are tightened to hold the rod to the bone screws in a pre-selected position by linear movement of the compression ring.

Claims (20)

1. A bottom loading modular head assembly for stabilizing bones comprising:

a bone screw having a first end and a second end, said first end constructed and arranged as a shank portion for penetrating securement to a bone, said second end constructed and arranged as a head portion; a connector for securing a rod to an anchored bone screw, said connector formed from a clamp securable to said head portion of said anchored bone screw wherein said clamp is inserted over said head portion of said anchored bone screw, said clamp having an elongated body with an exterior wall, said exterior wall including at least one annular bulge to provide a change in the external diameter of said exterior wall, at least one pin slot having a pin receiving portion constructed and arranged for receipt of a pin, said pin receiving portion comprising an expansion slot at a distal end and an opening at a proximal end forming a lip to allow uni-directional movement of said pin through said lip into a passageway; said passageway further comprising an expansion slot at an apex of said passageway;

a rod slot extending across said exterior wall constructed and arranged to accept said rod; and, a compression ring surrounding said exterior wall, said compression ring comprises a pin receiving aperture which aligns with said pin receiving portion of said clamp when said assembly is in an unlocked position during installation;

wherein said clamp is linearly traversable along said exterior walls between a first or open position and a second or closed position by application of a force consisting of a linear force along a longitudinal axis of said clamp, whereby traversal of said clamp from said first position to said second position simultaneously causes (i) said pin to move past said lip portion and into shaft, said compressive forces prohibiting said pin from being pushed back into said pin receiving slot, and (ii) causes said clamp to cooperate with said at least one annular bulge to apply compressive forces to said clamp to immobilize the connections between said clamp and said rod and said clamp and said anchored bone screw.

2. The bottom loading modular head assembly for stabilizing bones of claim 1 , wherein said clamp comprises a proximal end and a distal end, said proximal end defined by a U-shaped opening for receipt of a rod and said distal end defining an annulus.

3. The bottom loading modular head assembly for stabilizing bones of claim 1 , wherein said has a length to allow variable positioning of said pin during installation.

4. The bottom loading modular head assembly for stabilizing bones of claim 1 , wherein said compression ring includes at least one inner annular ridge constructed and arranged to engage said at least one annular bulge in an overlapping manner while said compression ring is in said second position, whereby engagement of said at least one bulge and said at least one ridge applies compressive forces to said clamp for immobilizing said clamp to said rod.

5. The bottom loading modular head assembly for stabilizing bones of claim 1 , wherein said compression ring includes at least one inner annular ridge constructed and arranged to engage said at least one annular bulge in an overlapping manner while said compression ring is in said second position, whereby engagement of said at least one bulge and said at least one ridge applies compressive forces to said clamp for immobilizing said clamp to said head of the anchored bone screw.

6. The bottom loading modular head assembly for stabilizing bones of claim 1 , wherein said at least one annular bulge is constructed and arranged to cooperate with said compression ring to apply compressive forces to said clamp for immobilizing at least one of said connections.

7. The bottom loading modular head assembly for stabilizing bones of claim 6 , wherein the at least one annular bulge is constructed and arranged to cooperate with said compression ring while said compression ring is in said second position to immobilize the connection between said clamp and said bone screw said second bulge constructed and arranged to cooperate with said compression ring to immobilize the connection between said clamp while said compression ring is in said second position, whereby said compression ring may independently engage said first or said second bulges during translation thereof.

8. The bottom loading modular head assembly for stabilizing bones of claim 1 , wherein said bone screw includes at least one helical thread for penetrating and engaging a bone and wherein said head portion is at least partially spherical in shape.

9. An apparatus comprising: a bone screw having a threaded shaft and a screw head; a connector having a clamp body with a receptacle sized to accommodate the head of an anchored bone screw wherein said clamp body is inserted over said head of said anchored bone screw; and, a compression ring around an exterior wall of the clamp body and movable along the exterior walls from an open position to a closed position, the compression ring including a pin receiving portion for receipt of a pin, said pin receiving portion comprising an expansion slot at a distal end and an opening at a proximal end forming a lip to allow uni-directional movement of said pin through said lip into a passageway, said passageway further comprising an expansion slot at an apex of said passageway;

a rod slot extending across said exterior wall constructed and arranged to accept a rod; a compression ring surrounding said exterior wall, said compression ring comprises a pin receiving aperture which aligns with said pin receiving portion of said clamp when said assembly is in an unlocked position during installation;

wherein said clamp is linearly traversable along said exterior walls between a first or open position and a second or closed position by application of a force consisting of a linear force along a longitudinal axis of said clamp, whereby traversal of said clamp from said first position to said second position simultaneously causes (i) said pin to move past said lip portion and into shaft, said compressive forces prohibiting said pin from being pushed back into said pin receiving slot, and (ii) causes said clamp to cooperate with at least one annular bulge to apply compressive forces to said clamp to immobilize the connections between said clamp and said rod and said clamp and said anchored bone screw.

10. The apparatus of claim 9 , wherein the open position defined when the compression ring is moved towards the receptacle, wherein said connector is secured to an anchored bone screw by insertion of the head of the bone screw into the receptacle whereby the wall of the receptacle expands to allow receipt of the anchored bone screw head.

11. The apparatus of claim 9 , wherein said receptacle includes slits to increase the radial flexibility of the wall as positioned within said compression ring.

12. The apparatus of claim 9 , wherein said position of said compression ring with respect to said clamp body is adjustable when said compression ring is in the open position and is fixed with said compression ring is in the closed position.

13. The apparatus of claim 9 , wherein said compression ring is pushed downwards, over said head of shank, said pin moving in an opposing direction into said pin receiving shaft, and said compression forces causing a narrowing of said lip of pin retention slot, thereby inhibiting said pin from moving past narrow gap.

14. The apparatus of claim 9 , wherein said clamp body has annular bulges which engage annular ridges on the inside of said compression ring when said compression ring is in the closed position.

15. The apparatus of claim 9 , wherein said rod slot has upper and lower longitudinal ridges to grip the rod.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2015
From: DOUBLER, ROBERT L.; HAMMILL, JOHN E., SR
To: SPINAL LLC
Reel/Frame 035128/0619 →
Continuity (1)
Related Publication 20160262816A1 · Sep 15, 2016