Although the initial mechanical properties of additively manufactured porous biomaterials are intensively studied during the last few years, almost no information is available regarding the evolution of the mechanical properties of implant-bone complex as the tissue regeneration progresses. In this paper, we studied the effects of tissue regeneration on the static and fatigue behavior of selective laser melted porous titanium structures with three different porosities (i.e. 77, 81, and 85%). The porous structures were filled with four different polymeric materials with mechanical properties in the range of those observed for de novo bone (0.7 GPaAccepted Author ManuscriptBiomaterials & Tissue Biomechanic
Due to its good biocompatibility, porous titanium is an interesting material for biomedical applicat...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...
Additive manufacturing techniques are getting more and more established as reliable methods for prod...
Additively manufactured porous titanium implants, in addition to preserving the excellent biocompati...
Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bo...
Meta-materials are structures when their small-scale properties are considered, but behave as materi...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...
Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport proper...
Meta-biomaterials are porous biomaterials created by additive manufacturing techniques such as Selec...
Traditional implants made of bulk titanium are much stiffer than human bone and this mismatch can in...
Meeting the huge variety of patient’s needs is only partially possible with standard medical implant...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Due to its good biocompatibility, porous titanium is an interesting material for biomedical applicat...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...
Additive manufacturing techniques are getting more and more established as reliable methods for prod...
Additively manufactured porous titanium implants, in addition to preserving the excellent biocompati...
Additively manufactured (AM) porous metallic biomaterials are considered promising candidates for bo...
Meta-materials are structures when their small-scale properties are considered, but behave as materi...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...
Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport proper...
Meta-biomaterials are porous biomaterials created by additive manufacturing techniques such as Selec...
Traditional implants made of bulk titanium are much stiffer than human bone and this mismatch can in...
Meeting the huge variety of patient’s needs is only partially possible with standard medical implant...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Due to its good biocompatibility, porous titanium is an interesting material for biomedical applicat...
This paper provides new insights into the fatigue properties of porous metallic biomaterials produce...
In this study, we tried to quantify the isolated and modulated effects of topological design and mat...