Large critical size bone defects are complicated to treat, and in many cases, autografts become a challenge due to size and availability. In such situations, a synthetic bone implant that can be patient-specifically designed and fabricated with control over parameters such as porosity, rigidity, and osteogenic cues can act as a potential synthetic bone substitute. In this study, we produced photocuring composite resins with poly(trimethylene carbonate) containing high ratios of bioactive ceramics and printed porous 3D composite scaffolds to be used as bone grafts. To enhance the overall surface area available for cell infiltration, the scaffolds were also filled with a macroporous cryogel. Furthermore, the scaffolds were functionalized with...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Achieving adequate healing in large or load-bearing bone defects is highly challenging even with sur...
Large critical size bone defects are complicated to treat, and in many cases, autografts become a ch...
[[abstract]]An osteoconductive scaffold can facilitate bone defect repair. In this study, a novel el...
[[abstract]]An osteoconductive scaffold can facilitate bone defect repair. In this study, a novel el...
Background: The repair of large bone defects remains challenging for orthopaedic surgeons. Bone graf...
We have standardized a long bone defect model in rabbits to quantitatively compare the bone healing ...
<div><p>Bone defects above critical size do not heal completely by itself and thus represent major c...
A large variety of approaches have been used to treat large and irregular shaped bone defects with l...
The aim of this study was to develop novel hydroxyapatite (HAP)-based bioactive bone replacement mat...
A promising new smart scaffold with potential for clinical use was prepared during our experiments. ...
Due to the increasing number of orthopedic injuries occurring each year, there is a critical need fo...
Jiacan Su, Liehu Cao, Baoqing Yu, Shaojun Song, Xinwei Liu, Zhiwei Wang, Ming LiDepartment of Orthop...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Achieving adequate healing in large or load-bearing bone defects is highly challenging even with sur...
Large critical size bone defects are complicated to treat, and in many cases, autografts become a ch...
[[abstract]]An osteoconductive scaffold can facilitate bone defect repair. In this study, a novel el...
[[abstract]]An osteoconductive scaffold can facilitate bone defect repair. In this study, a novel el...
Background: The repair of large bone defects remains challenging for orthopaedic surgeons. Bone graf...
We have standardized a long bone defect model in rabbits to quantitatively compare the bone healing ...
<div><p>Bone defects above critical size do not heal completely by itself and thus represent major c...
A large variety of approaches have been used to treat large and irregular shaped bone defects with l...
The aim of this study was to develop novel hydroxyapatite (HAP)-based bioactive bone replacement mat...
A promising new smart scaffold with potential for clinical use was prepared during our experiments. ...
Due to the increasing number of orthopedic injuries occurring each year, there is a critical need fo...
Jiacan Su, Liehu Cao, Baoqing Yu, Shaojun Song, Xinwei Liu, Zhiwei Wang, Ming LiDepartment of Orthop...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Achieving adequate healing in large or load-bearing bone defects is highly challenging even with sur...