Despite the recent advances in 3D-printing, it is often difficult to fabricate implants that optimally fit a defect size or shape. There are some approaches to resolve this issue, such as patient-specific implant/scaffold designs based on CT images of the patients, however, this process is labor-intensive and costly. Especially in developing countries, affordable treatment options are required, while still not excluding these patient groups from potential material and manufacturing advances. Here, a selective laser melting (SLM) 3D-printing strategy was used to fabricate a hierarchical, LEGO®-inspired Assemblable Titanium Scaffold (ATS) system, which can be manually assembled in any shape or size with ease. A surgeon can quickly create a sc...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal impl...
We overview recent findings achieved in the field of model-driven development of additively manufact...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Slow and incomplete osseointegration and loss of osseointegration are major problems in dental and b...
AbstractInkjet 3D printing as a versatile rapid manufacturing method was utilized for making titaniu...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal impl...
We overview recent findings achieved in the field of model-driven development of additively manufact...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Over the last decade, advances in additive manufacturing have allowed to obtain complex 3D porous la...
Slow and incomplete osseointegration and loss of osseointegration are major problems in dental and b...
AbstractInkjet 3D printing as a versatile rapid manufacturing method was utilized for making titaniu...
Orthopedic implants are under incessant advancement to improve their interactions with surrounding b...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
Titanium (Ti) based tissue engineering scaffolds can be used to repair damaged bone. However, succes...
With the increasing demand for low-cost and more efficient dental implants, there is an urgent need ...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal impl...