The management and definitive treatment of segmental bone defects in the setting of acute trauma, fracture non-union, revision joint arthroplasty, and tumor surgery are challenging clinical problems with no consistently satisfactory solution. Orthopaedic surgeons are developing novel strategies to treat these problems, including three-dimensional (3D) printing combined with growth factors and/or cells. This article reviews the current strategies for management of segmental bone loss in orthopaedic surgery, including graft selection, bone graft substitutes, and operative techniques. Furthermore, we highlight 3D printing as a technology that may serve a major role in the management of segmental defects. The optimization of a 3D-printed scaffo...
Due to traffic accidents, injuries, burns, congenital malformations and other reasons, a large numbe...
Objectives Three-dimensional (3D) bioprinting, a method derived from additive manufacturing technolo...
SummaryThree-dimensional (3D) printers can create complex structures based on digital models. The co...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
Hope is that tissue engineering will provide a solution to meet the growing needs for bone substitut...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
Background: Three-dimensional (3D) printing is a technology capable of creating solid objects based ...
The treatment of bone defects remains a challenging clinical problem with high reintervention rates,...
Regenerating large bone defects remains a significant clinical challenge, motivating increased inter...
International audienceThe healing of bone fractures is a well-orchestrated physiological process inv...
OBJECTIVES: Three-dimensional (3D) bioprinting, a method derived from additive manufacturing technol...
Purpose: Bone augmentation is a procedure in a patient who has been affected by tissue defects. The ...
In the last decades, there has been an important increase in the global survival of patients affecte...
Orthopaedic surgery lends itself well to advances in technology. An area of interest and ongoing res...
The musculoskeletal system is essential for maintaining posture, protecting organs, facilitating loc...
Due to traffic accidents, injuries, burns, congenital malformations and other reasons, a large numbe...
Objectives Three-dimensional (3D) bioprinting, a method derived from additive manufacturing technolo...
SummaryThree-dimensional (3D) printers can create complex structures based on digital models. The co...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
Hope is that tissue engineering will provide a solution to meet the growing needs for bone substitut...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
Background: Three-dimensional (3D) printing is a technology capable of creating solid objects based ...
The treatment of bone defects remains a challenging clinical problem with high reintervention rates,...
Regenerating large bone defects remains a significant clinical challenge, motivating increased inter...
International audienceThe healing of bone fractures is a well-orchestrated physiological process inv...
OBJECTIVES: Three-dimensional (3D) bioprinting, a method derived from additive manufacturing technol...
Purpose: Bone augmentation is a procedure in a patient who has been affected by tissue defects. The ...
In the last decades, there has been an important increase in the global survival of patients affecte...
Orthopaedic surgery lends itself well to advances in technology. An area of interest and ongoing res...
The musculoskeletal system is essential for maintaining posture, protecting organs, facilitating loc...
Due to traffic accidents, injuries, burns, congenital malformations and other reasons, a large numbe...
Objectives Three-dimensional (3D) bioprinting, a method derived from additive manufacturing technolo...
SummaryThree-dimensional (3D) printers can create complex structures based on digital models. The co...