One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shielding. This is caused by an uneven load distribution across the bone normally due to a stiff metal prosthesis component, leading to periprosthetic bone resorption and to implant loosening. To reduce the stress shielding and to improve osseointegration, biocompatible porous structures suitable for orthopaedic applications have been developed. Aim of this study was to propose a novel in-vitro model of the mechanical interaction between metal lattice structures and bovine cortical bone in compression. Analysis of the strain distribution between metal structure and bone provides useful information on the potential stress shielding of orthopaedic i...
The biological adaptation of bone to changes in its environment is a continual process known as bone...
As compared to human bone properties leads to bone or implant fracture. This study proposes two uniq...
Porous structures are used in many industrial applications such as thermal insulation, packaging and...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
Recent advances in the field of metallic additive manufacturing have expanded production capabilitie...
In order to improve the stress shielding characteristics of orthopaedic devices implants that mimic ...
Human bones are biological examples of functionally graded lattice capable to withstand large in viv...
Bone-related defects that cannot heal without significant surgical intervention represent a signific...
Massive acetabular bone defects are difficult to treat with the currently available implants. Advanc...
Although the initial mechanical properties of additive-manufactured (AM) metal scaffolds have been t...
In order to improve the stiffness characteristics of orthopedic devices implants that mimic the mech...
This work compares the stress distribution in the periprosthetic cortical bone when implanted with C...
Osteoregenerative biomaterials for the treatment of bone defects are under much development, with th...
Background: Full ceramic or metal custom-made root analogue implants (RAIs) are made by replicating ...
The biological adaptation of bone to changes in its environment is a continual process known as bone...
As compared to human bone properties leads to bone or implant fracture. This study proposes two uniq...
Porous structures are used in many industrial applications such as thermal insulation, packaging and...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Metallic orthopedic implants to replace or generate lost bones caused by traumatic road traffic inju...
Recent advances in the field of metallic additive manufacturing have expanded production capabilitie...
In order to improve the stress shielding characteristics of orthopaedic devices implants that mimic ...
Human bones are biological examples of functionally graded lattice capable to withstand large in viv...
Bone-related defects that cannot heal without significant surgical intervention represent a signific...
Massive acetabular bone defects are difficult to treat with the currently available implants. Advanc...
Although the initial mechanical properties of additive-manufactured (AM) metal scaffolds have been t...
In order to improve the stiffness characteristics of orthopedic devices implants that mimic the mech...
This work compares the stress distribution in the periprosthetic cortical bone when implanted with C...
Osteoregenerative biomaterials for the treatment of bone defects are under much development, with th...
Background: Full ceramic or metal custom-made root analogue implants (RAIs) are made by replicating ...
The biological adaptation of bone to changes in its environment is a continual process known as bone...
As compared to human bone properties leads to bone or implant fracture. This study proposes two uniq...
Porous structures are used in many industrial applications such as thermal insulation, packaging and...