Shortcomings of DXA to assess changes in bone tissue density and microstructure induced by metabolic bone diseases in rat models
暂无分享,去创建一个
B. Snyder | R. Müller | A. Nazarian | E. Cory
[1] D. Bauer,et al. Primer on the Metabolic Bone Diseases and Disorders of Mineral Metabolism , 2009 .
[2] U. Iwaniec,et al. A comparative study of the bone-restorative efficacy of anabolic agents in aged ovariectomized rats , 2007, Osteoporosis International.
[3] L. Dai,et al. Differences of bone mass and bone structure in osteopenic rat models caused by spinal cord injury and ovariectomy , 2007, Osteoporosis International.
[4] L. Nordsletten,et al. Experimental osteoporosis induced by ovariectomy and vitamin D deficiency does not markedly affect fracture healing in rats , 2007, Acta orthopaedica.
[5] L. Bonewald,et al. Loss of DMP1 causes rickets and osteomalacia and identifies a role for osteocytes in mineral metabolism , 2006, Nature Genetics.
[6] P. Kannus,et al. Renal insufficiency-induced bone loss is associated with an increase in bone size and preservation of strength in rat proximal femur. , 2006, Bone.
[7] C. Moran,et al. Effect of comorbidities and postoperative complications on mortality after hip fracture in elderly people: prospective observational cohort study , 2005, BMJ : British Medical Journal.
[8] M. Lakshmana,et al. Assessment of experimental osteoporosis using CT-scanning, quantitative X-ray analysis and impact test in calcium deficient ovariectomized rats. , 2005, Journal of pharmacological and toxicological methods.
[9] J. Lotz,et al. Basic fibroblast growth factor improves trabecular bone connectivity and bone strength in the lumbar vertebral body of osteopenic rats , 2005, Osteoporosis International.
[10] M. Hori,et al. Effects of combined elcatonin and alendronate treatment on the architecture and strength of bone in ovariectomized rats , 2005, Journal of Bone and Mineral Metabolism.
[11] F. Bauss,et al. Changes in bone structure after augmentation cystoplasty in chronic uraemic rats , 2005, BJU international.
[12] I. Kaczmarczyk-Sedlak,et al. Effect of adminitration of etidronate and retinol on bone mechanical properties in ovariectomized rats. , 2005, Pharmacological reports : PR.
[13] M. Uetani,et al. Effects of risedronate on trabecular microstructure and biomechanical properties in ovariectomized rat tibia , 2005, Osteoporosis International.
[14] D. Bauer,et al. Change in Bone Turnover and Hip, Non‐Spine, and Vertebral Fracture in Alendronate‐Treated Women: The Fracture Intervention Trial , 2004, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[15] F. Gejyo,et al. Microfocus Computed Tomography Analysis of Early Changes in Bone Microstructure in Rats with Chronic Renal Failure , 2003, Nephron Experimental Nephrology.
[16] J. Glowacki,et al. Osteoporosis and vitamin-D deficiency among postmenopausal women with osteoarthritis undergoing total hip arthroplasty. , 2003, The Journal of bone and joint surgery. American volume.
[17] R. Heaney,et al. Is the paradigm shifting? , 2003, Bone.
[18] G. Evans,et al. Long-Term Zoledronic Acid Treatment Increases Bone Structure and Mechanical Strength of Long Bones of Ovariectomized Adult Rats , 2003, Calcified Tissue International.
[19] Fran Harris,et al. Improvement in spine bone density and reduction in risk of vertebral fractures during treatment with antiresorptive drugs. , 2002, The American journal of medicine.
[20] B. L. Riggs,et al. Bone Turnover Matters: The Raloxifene Treatment Paradox of Dramatic Decreases in Vertebral Fractures Without Commensurate Increases in Bone Density , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[21] M. Freesmeyer,et al. Comparison of peripheral bone and body axis skeleton in a rat model of mild-to-moderate renal failure in the presence of physiological serum levels of calcitropic hormones. , 2001, Bone.
[22] D. Kalu,et al. Effects of separate and combined therapy with growth hormone and parathyroid hormone on lumbar vertebral bone in aged ovariectomized osteopenic rats. , 2001, Bone.
[23] S A Goldstein,et al. Vertebral trabecular bone microscopic tissue elastic modulus and hardness do not change in ovariectomized rats , 2000, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[24] P. Rüegsegger,et al. Direct Three‐Dimensional Morphometric Analysis of Human Cancellous Bone: Microstructural Data from Spine, Femur, Iliac Crest, and Calcaneus , 1999, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[25] J. Glowacki,et al. Occult vitamin D deficiency in postmenopausal US women with acute hip fracture. , 1999, JAMA.
[26] S. Miller,et al. Disparate effects of mild, moderate, and severe secondary hyperparathyroidism on cancellous and cortical bone in rats with chronic renal insufficiency. , 1998, Bone.
[27] M. Wilson,et al. High fluoride intakes cause osteomalacia and diminished bone strength in rats with renal deficiency. , 1996, Bone.
[28] L. Melton,et al. The worldwide problem of osteoporosis: insights afforded by epidemiology. , 1995, Bone.
[29] J. Kanis. Primer on the Metabolic Bone Diseases and Disorders of Mineral Metabolism , 1994 .
[30] T. Wronski,et al. Long‐term osteopenic changes in cancellous bone structure in ovariectomized rats , 1993, The Anatomical record.
[31] Harry K. Genant,et al. Consensus development conference: diagnosis, prophylaxis, and treatment of osteoporosis. , 1993, The American journal of medicine.
[32] W. Hayes,et al. Theoretical analysis of the experimental artifact in trabecular bone compressive modulus. , 1993, Journal of biomechanics.
[33] H. Gundersen,et al. Quantification of connectivity in cancellous bone, with special emphasis on 3-D reconstructions. , 1993, Bone.
[34] Claus Christiansen,et al. Diagnosis of Osteoporosis , 1992, Southern medical journal.
[35] R B Wallace,et al. A model of lifetime osteoporosis impact. , 1991, Archives of internal medicine.
[36] E. Schneider,et al. Estimation of mechanical properties of cortical bone by computed tomography , 1991, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[37] H. Kopera,et al. Briefe an die Redaktion , 1989, Klinische Wochenschrift.
[38] Everett M. Rogers,et al. Consensus Development Conference , 1984 .
[39] L. Sokoloff. Occult osteomalacia in American (U.S.A.) patients with fracture of the hip , 1978, The American journal of surgical pathology.
[40] J. Gallagher,et al. OSTEOMALACIA AND FEMORAL FRACTURES , 1974 .
[41] J. Fine. Letter: Bacteraemic shock. , 1974, Lancet.
[42] D. MacLeod,et al. uantitative measurements of osteoid in health and disease. , 1969, Clinical orthopaedics and related research.
[43] N. Ocarino,et al. Physical activity in osteopenia treatment improved the mass of bones directly and indirectly submitted to mechanical impact. , 2007, Journal of musculoskeletal & neuronal interactions.
[44] A. Hofman,et al. Fracture incidence and association with bone mineral density in elderly men and women: the Rotterdam Study. , 2004, Bone.
[45] S. Majumdar,et al. The Temporal Changes of Trabecular Architecture in Ovariectomized Rats Assessed by MicroCT , 2001, Osteoporosis International.
[46] TOR Hildebrand,et al. Quantification of Bone Microarchitecture with the Structure Model Index. , 1997, Computer methods in biomechanics and biomedical engineering.
[47] Wilson C. Hayes,et al. Basic Orthopaedic Biomechanics , 1995 .
[48] S. Cowin,et al. On the dependence of the elasticity and strength of cancellous bone on apparent density. , 1988, Journal of biomechanics.
[49] F. V. Van Ginkel,et al. Histomorphometric profile and vitamin D status in patients with femoral neck fracture. , 1982, Metabolic bone disease & related research.
[50] E. Trethewie. Letter: Mental activity and cerebral blood-flow. , 1974, Lancet.