Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport properties of bone are in great demand but are rarely found in the literature. In this study, we rationally designed and additively manufactured (AM) porous metallic biomaterials based on four different types of triply periodic minimal surfaces (TPMS) that mimic the properties of bone to an unprecedented level of multi-physics detail. Sixteen different types of porous biomaterials were rationally designed and fabricated using selective laser melting (SLM) from a titanium alloy (Ti-6Al-4V). The topology, quasi-static mechanical properties, fatigue resistance, and permeability of the developed biomaterials were then characterized. In terms of topolog...
Treating large bone defects is still a clinical challenge without perfect solution, mainly due to th...
The holy grail of orthopedic implant design is to ward off both aseptic and septic loosening for lon...
One of the critical issues in orthopaedic regenerative medicine is the design of bone scaffolds and ...
Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport proper...
Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport proper...
Additively manufactured (AM, =3D printed) porous metallic biomaterials with topologically ordered un...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
We overview recent findings achieved in the field of model-driven development of additively manufact...
Additively manufactured (AM) micro-architected biodegradable metals offer a unique combination of pr...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...
For the treatment of large bony defects, no perfect solution has been yet found, partially due to th...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tTriply periodic minimal surface (TPMS) struc...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Treating large bone defects is still a clinical challenge without perfect solution, mainly due to th...
The holy grail of orthopedic implant design is to ward off both aseptic and septic loosening for lon...
One of the critical issues in orthopaedic regenerative medicine is the design of bone scaffolds and ...
Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport proper...
Porous biomaterials that simultaneously mimic the topological, mechanical, and mass transport proper...
Additively manufactured (AM, =3D printed) porous metallic biomaterials with topologically ordered un...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
Additive manufacturing (AM) techniques enable fabrication of bone-mimicking meta-biomaterials with u...
We overview recent findings achieved in the field of model-driven development of additively manufact...
Additively manufactured (AM) micro-architected biodegradable metals offer a unique combination of pr...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...
For the treatment of large bony defects, no perfect solution has been yet found, partially due to th...
Although the initial mechanical properties of additively manufactured porous biomaterials are intens...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tTriply periodic minimal surface (TPMS) struc...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Treating large bone defects is still a clinical challenge without perfect solution, mainly due to th...
The holy grail of orthopedic implant design is to ward off both aseptic and septic loosening for lon...
One of the critical issues in orthopaedic regenerative medicine is the design of bone scaffolds and ...