
pmid: 21970924
handle: 2108/54052
The deepening knowledge about bone pathophysiology, together with the development of less invasive bone implants, fitted for the treatment of fragility fractures, the continuous advances in the creation of osteoconductive and osteoinductive biomaterials, the availability of bone active agents, capable of modulating fracture healing, actually represent the orthopaedic "weapons" to improve the surgical outcome and quality of life in patients with osteoporosis.
Risk, Bone Density Conservation Agent, Osteoporotic Fracture, Biocompatible Materials, Fracture Fixation, Internal, Fractures, Bone, Fracture Fixation, Bone Density, Humans, Bone, Biocompatible Material, Fracture Healing, Bone Density Conservation Agents, Osteoporosi, Orthopedic, Internal, Settore MED/33 - MALATTIE APPARATO LOCOMOTORE, Orthopedics, Osteoporosis, Risk; Humans; Orthopedics; Fractures, Bone; Fracture Healing; Bone Density; Osteoporotic Fractures; Osteoporosis; Bone Density Conservation Agents; Biocompatible Materials; Fracture Fixation, Internal, Fractures, Osteoporotic Fractures, Human
Risk, Bone Density Conservation Agent, Osteoporotic Fracture, Biocompatible Materials, Fracture Fixation, Internal, Fractures, Bone, Fracture Fixation, Bone Density, Humans, Bone, Biocompatible Material, Fracture Healing, Bone Density Conservation Agents, Osteoporosi, Orthopedic, Internal, Settore MED/33 - MALATTIE APPARATO LOCOMOTORE, Orthopedics, Osteoporosis, Risk; Humans; Orthopedics; Fractures, Bone; Fracture Healing; Bone Density; Osteoporotic Fractures; Osteoporosis; Bone Density Conservation Agents; Biocompatible Materials; Fracture Fixation, Internal, Fractures, Osteoporotic Fractures, Human
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