Bone Strength and Structural Deficits in Children and Adolescents With a Distal Forearm Fracture Resulting From Mild Trauma
暂无分享,去创建一个
R. Müller | S. Khosla | E. Atkinson | S. Amin | J. Farr | L. Melton | S. Kirmani | L. McCready
[1] N. Bishop,et al. Fracture prediction and the definition of osteoporosis in children and adolescents: the ISCD 2013 Pediatric Official Positions. , 2014, Journal of clinical densitometry : the official journal of the International Society for Clinical Densitometry.
[2] S. Khosla,et al. A distal forearm fracture in childhood is associated with an increased risk for future fragility fractures in adult men, but not women , 2013, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[3] L. Melton,et al. Relationship of sympathetic activity to bone microstructure, turnover, and plasma osteopontin levels in women. , 2012, The Journal of clinical endocrinology and metabolism.
[4] R. Eastell,et al. Obesity is a risk factor for fracture in children but is protective against fracture in adults: a paradox. , 2012, Bone.
[5] I. Janssen. The epidemiology of sarcopenia. , 2011, Clinics in geriatric medicine.
[6] R. Rizzoli,et al. Fractures during childhood and adolescence in healthy boys: relation with bone mass, microstructure, and strength. , 2011, The Journal of clinical endocrinology and metabolism.
[7] Sharmila Majumdar,et al. Reproducibility of direct quantitative measures of cortical bone microarchitecture of the distal radius and tibia by HR-pQCT. , 2010, Bone.
[8] E. Seeman,et al. Rapid growth produces transient cortical weakness: A risk factor for metaphyseal fractures during puberty , 2010, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[9] E. Schoenau,et al. Do Bone Mineral Density, Bone Geometry and the Functional Muscle-Bone Unit Explain Bone Fractures in Healthy Children and Adolescents? , 2010, Hormone Research in Paediatrics.
[10] N. Bishop,et al. Fat and bone in children: Differential effects of obesity on bone size and mass according to fracture history , 2010, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[11] Ralph Müller,et al. Bone Structure at the Distal Radius During Adolescent Growth , 2009, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[12] M. Alen,et al. Bone's structural diversity in adult females is established before puberty. , 2009, The Journal of clinical endocrinology and metabolism.
[13] J. Macneil,et al. Accuracy of high-resolution peripheral quantitative computed tomography for measurement of bone quality. , 2007, Medical engineering & physics.
[14] J. Tobias,et al. Bone Fragility Contributes to the Risk of Fracture in Children, Even After Moderate and Severe Trauma , 2007, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[15] Steven K Boyd,et al. Automatic segmentation of cortical and trabecular compartments based on a dual threshold technique for in vivo micro-CT bone analysis. , 2007, Bone.
[16] Ralph Müller,et al. Contribution of In Vivo Structural Measurements and Load/Strength Ratios to the Determination of Forearm Fracture Risk in Postmenopausal Women , 2007, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[17] R. Daly,et al. Optimizing bone mass and strength : the role of physical activity and nutrition during growth , 2007 .
[18] J. Tobias,et al. Association Between Bone Density and Fractures in Children: A Systematic Review and Meta-analysis , 2006, Pediatrics.
[19] Sheila M. Williams,et al. Bone and Body Composition of Children and Adolescents With Repeated Forearm Fractures , 2005, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[20] Ann L Oberg,et al. Effects of Sex and Age on Bone Microstructure at the Ultradistal Radius: A Population‐Based Noninvasive In Vivo Assessment , 2005, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[21] Tjeerd P van Staa,et al. Epidemiology of Childhood Fractures in Britain: A Study Using the General Practice Research Database , 2004, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[22] A. Oberg,et al. Incidence of childhood distal forearm fractures over 30 years: a population-based study. , 2003, JAMA.
[23] L. Morris. Assessment of Skeletal Maturity and Prediction of Adult Height (TW3 Method) , 2003 .
[24] F. Eckstein,et al. Estimation of distal radius failure load with micro-finite element analysis models based on three-dimensional peripheral quantitative computed tomography images. , 2002, Bone.
[25] G. Colditz,et al. Comparing physical activity questionnaires for youth: seasonal vs annual format. , 2001, American journal of preventive medicine.
[26] M. Goran,et al. Early identification of children predisposed to low peak bone mass and osteoporosis later in life. , 2000, The Journal of clinical endocrinology and metabolism.
[27] L. Bachrach,et al. Dual energy X-ray absorptiometry (DEXA) measurements of bone density and body composition: promise and pitfalls. , 2000, Journal of pediatric endocrinology & metabolism : JPEM.
[28] P. Rüegsegger,et al. In vivo high resolution 3D-QCT of the human forearm. , 1998, Technology and health care : official journal of the European Society for Engineering and Medicine.
[29] S. Robinovitch,et al. Prediction of upper extremity impact forces during falls on the outstretched hand. , 1998, Journal of biomechanics.
[30] H K Genant,et al. Accuracy of cortical and trabecular bone measurements with peripheral quantitative computed tomography (pQCT). , 1998, Physics in medicine and biology.
[31] R. Rizzoli,et al. Familial resemblance for bone mineral mass is expressed before puberty. , 1998, The Journal of clinical endocrinology and metabolism.
[32] P. Rüegsegger,et al. Ridge number density: a new parameter for in vivo bone structure analysis. , 1997, Bone.
[33] G A Colditz,et al. Validation of a youth/adolescent food frequency questionnaire. , 1997, Preventive medicine.
[34] R. Huiskes,et al. Direct mechanics assessment of elastic symmetries and properties of trabecular bone architecture. , 1996, Journal of biomechanics.
[35] L. Melton,et al. History of the Rochester Epidemiology Project. , 1996, Mayo Clinic proceedings.
[36] A. M. Parfitt,et al. The two faces of growth: Benefits and risks to bone integrity , 1994, Osteoporosis International.
[37] R. Szabo,et al. Isolated ulnar shaft fractures. Retrospective study of 46 cases. , 1990, Acta orthopaedica Scandinavica.
[38] R. G. McCulloch,et al. Epidemiology of fractures of the distal end of the radius in children as associated with growth. , 1989, The Journal of bone and joint surgery. American volume.
[39] M. Kramhøft,et al. Epidemiology of distal forearm fractures in Danish children. , 1988, Acta orthopaedica Scandinavica.
[40] I. Dymond. The treatment of isolated fractures of the distal ulna. , 1984, The Journal of bone and joint surgery. British volume.
[41] C. Gordon,et al. Dual energy X-ray absorptiometry interpretation and reporting in children and adolescents: the 2007 ISCD Pediatric Official Positions. , 2008, Journal of clinical densitometry : the official journal of the International Society for Clinical Densitometry.
[42] R. Engelbert,et al. Fracture prediction and the definition of osteoporosis in children and adolescents: the ISCD 2007 Pediatric Official Positions. , 2008, Journal of clinical densitometry : the official journal of the International Society for Clinical Densitometry.
[43] A. Goulding. Risk factors for fractures in normally active children and adolescents. , 2007, Medicine and sport science.
[44] R. Rizzoli,et al. Peak bone mass , 2005, Osteoporosis International.
[45] P. Rüegsegger,et al. Calibration of trabecular bone structure measurements of in vivo three-dimensional peripheral quantitative computed tomography with 28-microm-resolution microcomputed tomography. , 1999, Bone.
[46] R. Huiskes,et al. A new method to determine trabecular bone elastic properties and loading using micromechanical finite-element models. , 1995, Journal of biomechanics.
[47] L. Landin,et al. Fracture patterns in children. Analysis of 8,682 fractures with special reference to incidence, etiology and secular changes in a Swedish urban population 1950-1979. , 1983, Acta orthopaedica Scandinavica. Supplementum.