Bone repair was addressed in a critical-sized defect model in sheep, combining a ceramic biomaterial and mesenchymal progenitor cells. The defects in the tibial mid-diaphysis were treated with autologous bone or with a silicon-stabilized tricalcium phosphate biomaterial, implemented cor not by the addition of expanded bone marrow stromal cells. An internal locking compression plate and an external fixator were applied for stabilization. Radiographies were taken during the 8 months follow-up: the pixel grey levels of the lesion areas were determined to evaluate the repair process radiologically. Microradiography, histology and vascular density tests were performed. The autologous bone-treated group performed best, as assessed radiologically,...
A disadvantage of traditional posterolateral spinal fusion models is that they are highly inefficien...
Currently, well established clinical therapeutic approaches for bone reconstruction are restricted t...
This work evaluated in vivo performance of a tissue-engineered bone-like matrix obtained by culturin...
Background: The repair of large bone defects is a major orthopedic challenge because autologous bone...
Background: The repair of large bone defects is a major orthopedic challenge because autologous bone...
Abstract Background The repair of large bone defects ...
Abstract\ud \ud Background\ud The repair of large bone...
Abstract Background The repair of large bone defects ...
Abstract Background The repair of large bone defects ...
Abstract Background The repair of large bone defects ...
Tissue engineering approaches have recently been devised to repair large bone losses. Tissue enginee...
Regenerative cell-based implants using periosteum-derived stem cells were developed for the treatmen...
The ability of marrow-derived osteoprogenitor cells to promote repair of critical-size tibial gaps u...
Bone loss is still a major problem in orthopedics. The purpose of this experimental study is to eval...
No current clinical treatments provide an ideal long-term solution for repair of long bone segment d...
A disadvantage of traditional posterolateral spinal fusion models is that they are highly inefficien...
Currently, well established clinical therapeutic approaches for bone reconstruction are restricted t...
This work evaluated in vivo performance of a tissue-engineered bone-like matrix obtained by culturin...
Background: The repair of large bone defects is a major orthopedic challenge because autologous bone...
Background: The repair of large bone defects is a major orthopedic challenge because autologous bone...
Abstract Background The repair of large bone defects ...
Abstract\ud \ud Background\ud The repair of large bone...
Abstract Background The repair of large bone defects ...
Abstract Background The repair of large bone defects ...
Abstract Background The repair of large bone defects ...
Tissue engineering approaches have recently been devised to repair large bone losses. Tissue enginee...
Regenerative cell-based implants using periosteum-derived stem cells were developed for the treatmen...
The ability of marrow-derived osteoprogenitor cells to promote repair of critical-size tibial gaps u...
Bone loss is still a major problem in orthopedics. The purpose of this experimental study is to eval...
No current clinical treatments provide an ideal long-term solution for repair of long bone segment d...
A disadvantage of traditional posterolateral spinal fusion models is that they are highly inefficien...
Currently, well established clinical therapeutic approaches for bone reconstruction are restricted t...
This work evaluated in vivo performance of a tissue-engineered bone-like matrix obtained by culturin...