IP Library › Granted Patent US 11,051,865
Granted Patent B2
US 11,051,865 · App. 16/257,682 · Granted Jul 6, 2021

Fixation of bone implants

Inventors: Gregory C. Stalcup (Fort Wayne, IN); Troy D. Knapp (Alachua, FL); Travis J. Geels (Fort Wayne, IN)
Assignee: SMed-TA/TD, LLC
A61B17/8685A61B17/1764A61B17/844A61B17/864A61B17/8605A61F2/30A61F2/30749A61F2/389A61F2/3859A61B17/0401A61B17/842A61B17/8635A61B2017/0404A61B2017/0414A61B2017/8655A61F2002/2817A61F2002/3068A61F2002/3092A61F2002/30484A61F2002/30578A61F2002/30594A61F2002/30878A61F2002/30886A61F2002/3895
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Quick Facts
Patent No.
US 11,051,865
App. No.
16/257,682
Granted
Jul 6, 2021
Kind
B2
Abstract

An orthopaedic implant includes a support body with a first side having a first inner surface and a second side connected to the first side and having a second inner surface and an outer surface. The first inner surface and the second inner surface each have channels formed within that combine to form a reservoir within the support body. A bone ingrowth layer is attached to the outer surface of the second side.

Claims (25)

1. An orthopaedic implant, comprising:

a support body including a first side having a first inner surface and a second side connected to the first side and having a second inner surface and an outer surface, the first inner surface and the second inner surface each having a plurality of channels formed within that combine to form a reservoir within the support body, the support body having a plurality of elution openings formed therein that are configured to allow a therapeutic agent in the reservoir to flow into the bone ingrowth layer and out to surrounding anatomy structures;

a bone ingrowth layer attached to the outer surface of the second side; and

the plurality of channels includes a plurality of parallel channels and at least one cross-channel connecting a pair of the parallel channels.

2. The orthopaedic implant of claim 1 , wherein at least some of the elution openings are formed in at least one of the plurality of channels of the second side.

3. The orthopaedic implant of claim 1 , wherein the support body further comprises a port formed therein.

4. The orthopaedic implant of claim 3 , further comprising a stopper inserted in the port.

5. The orthopaedic implant of claim 3 , further comprising a refill interface inserted in the port.

6. The orthopaedic implant of claim 5 , wherein the refill interface includes a disc having an opening and a tube connected to the opening and placed in the reservoir.

7. The orthopaedic implant of claim 6 , wherein the disc is configured to be placed outside of a patient to refill the reservoir.

8. The orthopaedic implant of claim 5 , wherein the refill interface is a therapeutic reservoir at least partially filled with a therapeutic agent and having a tube going through the port into the reservoir.

9. The orthopaedic implant of claim 8 , wherein the therapeutic reservoir is configured to force therapeutic agent into the reservoir when squeezed.

10. The orthopaedic implant of claim 3 , wherein the first side and the second side each have a port channel that extends through the support body to form the port.

11. An orthopaedic implant, comprising:

a support body including a first side having a first inner surface and a second side connected to the first side and having a second inner surface and an outer surface, the first inner surface and the second inner surface each having a plurality of channels formed within that combine to form a reservoir within the support body, the support body further including a port formed therein and a refill interface inserted in the port, the refill interface including a disc having an opening and a tube connected to the opening and placed in the reservoir, the disc being configured to be placed outside of a patient to refill the reservoir; and

a bone ingrowth layer attached to the outer surface of the second side.

12. The orthopaedic implant of claim 11 , wherein the first side and the second side each have a port channel that extends through the support body to form the port.

13. The orthopaedic implant of claim 11 , wherein the plurality of channels comprises a plurality of parallel channels and at least one cross-channel connecting a pair of the parallel channels.

14. The orthopaedic implant of claim 13 , wherein the support body has a plurality of elution openings formed in at least some of the parallel channels that are configured to allow a therapeutic agent in the reservoir to flow into the bone ingrowth layer and out to surrounding anatomy structures.

15. An orthopaedic implant, comprising:

a support body including a first side having a first inner surface and a second side connected to the first side and having a second inner surface and an outer surface, the first inner surface and the second inner surface each having a plurality of channels formed within that combine to form a reservoir within the support body, the plurality of channels comprising a plurality of parallel channels and at least one cross-channel connecting a pair of the parallel channels; and

a bone ingrowth layer attached to the outer surface of the second side.

16. The orthopaedic implant of claim 15 , wherein the support body further comprises a port formed therein.

17. The orthopaedic implant of claim 16 , further comprising a stopper inserted in the port or a refill interface inserted in the port.

18. The orthopaedic implant of claim 17 , wherein a refill interface is inserted in the port, wherein the refill interface is a therapeutic reservoir at least partially filled with a therapeutic agent and having a tube going through the port into the reservoir.

Continuity (5)
Continuation 15439245 · Feb 22, 2017
Continuation 14987293 · Jan 4, 2016
Continuation 14204693 · Mar 11, 2014
Provisional Application 61789158 · Mar 15, 2013
Related Publication 20190151002A1 · May 23, 2019
Cited By (1)
US 12,521,484