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Osteoporosis international, ISSN 0937-941X, 1/2012, Volume 23, Issue 1, pp. 305 - 315
Strontium ranelate appears to influence more than alendronate distal tibia bone microstructure as assessed by high-resolution peripheral quantitative computed... 
Osteoporosis | Medicine & Public Health | Alendronate | Orthopedics | Gynecology | Rheumatology | Finite elements analysis | Strontium ranelate | HR-pQCT | Microstructure | Endocrinology | HRpQCT | Life Sciences & Biomedicine | Endocrinology & Metabolism | Science & Technology | Bone and Bones - pathology | Thiophenes - therapeutic use | Radius - pathology | Humans | Middle Aged | Osteoporosis, Postmenopausal - pathology | Tomography, X-Ray Computed | Tibia - pathology | Alendronate - therapeutic use | Bone and Bones - drug effects | Bone and Bones - diagnostic imaging | Osteoporosis, Postmenopausal - diagnostic imaging | Radius - drug effects | Organometallic Compounds - therapeutic use | Female | Finite Element Analysis | Lumbar Vertebrae - physiopathology | Double-Blind Method | Tibia - diagnostic imaging | Bone Density Conservation Agents - therapeutic use | Thiophenes - pharmacology | Tibia - drug effects | Osteoporosis, Postmenopausal - drug therapy | Bone Density Conservation Agents - pharmacology | Bone Density - drug effects | Alendronate - pharmacology | Femur Neck - physiopathology | Osteoporosis, Postmenopausal - physiopathology | Aged | Organometallic Compounds - pharmacology | Radius - diagnostic imaging | Structure | Bones | Analysis | Index Medicus | Dual energy X-ray absorptiometry | Radius | Transformation | Bone turnover | Bisphosphonates | Stress | Post-menopause | Strontium | Alendronic acid | Fractures | Computed tomography | Tibia | Risk assessment | Bone mineral density | Bone strength | Age
Journal Article
Bone (New York, N.Y.), ISSN 8756-3282, 02/2012, Volume 50, Issue 2, pp. 546 - 552
Journal Article
Journal of bone and mineral research, ISSN 0884-0431, 09/2012, Volume 27, Issue 9, pp. 1936 - 1950
Like bone mass, bone quality is specified in development, actively maintained postnatally, and disrupted by disease. The roles of osteoblasts, osteoclasts, and... 
MATRIX METALLOPROTEINASE–13 | OSTEOCYTE | REMODELING | FRACTURE RESISTANCE | BONE QUALITY | OSTEOCYTE PERILACUNAR REMODELING | BONE MATRIX | MATRIX METALLOPROTEINASE-13 | Life Sciences & Biomedicine | Endocrinology & Metabolism | Science & Technology | Bone Matrix - metabolism | Lactation | Bone Matrix - diagnostic imaging | Osteocytes - enzymology | X-Ray Microtomography | Tibia - pathology | Matrix Metalloproteinase 13 - deficiency | Fractures, Bone - enzymology | Female | Fractures, Bone - diagnostic imaging | Tibia - physiopathology | Tibia - enzymology | Bone Resorption - physiopathology | Osteoclasts - pathology | Tibia - diagnostic imaging | Organ Size | Osteoclasts - metabolism | Bone Matrix - pathology | Matrix Metalloproteinase 13 - metabolism | Protein Transport | Bone Resorption - diagnostic imaging | Collagen - metabolism | Osteoblasts - pathology | Biomechanical Phenomena | Animals | Calcification, Physiologic | Bone Resorption - pathology | Fractures, Bone - physiopathology | Osteocytes - pathology | Fractures, Bone - pathology | Mice | Osteoblasts - metabolism | Bone Remodeling | Osteogenesis | Biological products | Fractures | Phosphatases | Collagen | Analysis | Stem cells | Bones | Health aspects | Density | Index Medicus | Bone remodelling | Mechanical properties | Osteocytes | SOST protein | Matrix metalloproteinase | Collagenase 3 | Osteoblasts | Diaphysis | Bone histomorphometry | Bone mass | Molecular modelling | Cross-linking | Extracellular matrix | Osteoclasts | Acid phosphatase (tartrate-resistant) | Bone loss | Bone matrix | matrix metalloproteinase-13 | remodeling | fracture resistance | bone matrix | osteocyte | bone quality | osteocyte perilacunar remodeling
Journal Article