IMPLANTS HAVING BONE GROWTH PROMOTING AGENTS AND METHODS OF USING SUCH IMPLANTS TO REPAIR BONE STRUCTURES
Various embodiments of implant systems and related apparatus, and methods of operating the same are described herein. In various embodiments, an implant for interfacing with a bone structure includes a web structure, including a space truss, configured to interface with human bone tissue. The space truss includes two or more planar truss units having a plurality of struts joined at nodes. Implants may be coated with or include fibers or particles to enhance bone growth around and through the implant.
1 - 16 . (canceled)
17 . An implant for interfacing with a bone structure, comprising:
a web structure comprising a plurality of struts joined at nodes, wherein the web structure is configured to interface with human bone tissue, wherein the web structure includes struts extending into a region surrounding a center of the web structure;
a plurality of biodegradable particles secured to one or more of the struts extending into the region surrounding the center of the web structure, wherein the biodegradable particles contain one or more bone growth promoting agents, and wherein the biodegradable particles are configured to dissolve in the presence of biological fluids in order to release the bone growth promoting agents.
18 . The implant of claim 17 , wherein the biodegradable particles include particles of varying sizes where different size particles release the bone growth promoting agents at different times in the presence of the biological fluid.
19 . The implant of claim 18 , wherein the different size particles include at least a first size of particle containing a first bone growth promoting agent and a second size of particle containing a second bone growth promoting agent, the second bone growth promoting agent being a different bone growth promoting agent from the first bone growth promoting agent.
20 . The implant of claim 17 , wherein the biodegradable particles include a mixture of particles with different polymers where the different polymers have different degradation rates to release the bone growth promoting agents at different times in the presence of the biological fluid.
21 . The implant of claim 20 , wherein the different polymer particles include at least a first type of polymer particle containing a first bone growth promoting agent and a second type of polymer particle containing a second bone growth promoting agent, the second bone growth promoting agent being a different bone growth promoting agent from the first bone growth promoting agent.
22 . The implant of claim 17 , wherein the region surrounding the center of the web structure includes at least 50% open space in the region.
23 . The implant of claim 22 , further comprising an additional plurality of the biodegradable particles filling at least some of the open space in the region surrounding the center of the web structure.
24 . The implant of claim 17 , wherein the one or more bone growth promoting agents include at least one of calcium phosphate and polysaccharide.
25 . The implant of claim 17 , wherein the web structure comprises a space truss having two or more planar truss units.
26 . The implant of claim 17 , wherein the biodegradable particles include biocompatible fiber casings.
27 . The implant of claim 26 , wherein the biocompatible fiber casings include collagen fibers, cortical fibers, allograft fibers, synthetic fibers, or combinations thereof.
28 . The implant of claim 26 , wherein the biocompatible fiber casings include an addition of carbon materials.
29 . The implant of claim 17 , wherein the biodegradable particles include an addition of an antibiotic compound.
30 . An implant for interfacing with a bone structure, comprising:
a web structure comprising a plurality of struts joined at nodes, wherein the web structure is configured to interface with human bone tissue, wherein the web structure includes struts extending into a region surrounding a center of the web structure;
a plurality of biodegradable particles secured to one or more of the struts extending into the region surrounding the center of the web structure, wherein the biodegradable particles include homogenous mixture of polymers and bone growth promoting agents, and wherein the biodegradable particles are configured to dissolve in the presence of biological fluids in order to release the bone growth promoting agents.
31 . The implant of claim 30 , wherein the biodegradable particles include particles of varying sizes where different size particles release the bone growth promoting agents at different times in the presence of the biological fluid.
32 . The implant of claim 31 , wherein the different size particles include at least a first size of particle homogenously mixed with a first bone growth promoting agent and a second size of particle homogenously mixed with a second bone growth promoting agent, the second bone growth promoting agent being a different bone growth promoting agent from the first bone growth promoting agent.
33 . The implant of claim 30 , wherein the biodegradable particles include a mixture of particles with different polymers where the different polymers have different degradation rates to release the bone growth promoting agents at different times in the presence of the biological fluid.
34 . The implant of claim 33 , wherein the different polymer particles include at least a first type of polymer particle homogenously mixed with a first bone growth promoting agent and a second type of polymer particle homogenously mixed with a second bone growth promoting agent, the second bone growth promoting agent being a different bone growth promoting agent from the first bone growth promoting agent.
35 . The implant of claim 30 , wherein the region surrounding the center of the web structure includes at least 50% open space in the region.
36 . The implant of claim 30 , wherein the web structure comprises a space truss having two or more planar truss units.