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Published in: Osteoporosis International 2/2016

01-02-2016 | Review

A biomechanical sorting of clinical risk factors affecting osteoporotic hip fracture

Author: Y. Luo

Published in: Osteoporosis International | Issue 2/2016

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Abstract

Osteoporotic fracture has been found associated with many clinical risk factors, and the associations have been explored dominantly by evidence-based and case-control approaches. The major challenges emerging from the studies are the large number of the risk factors, the difficulty in quantification, the incomplete list, and the interdependence of the risk factors. A biomechanical sorting of the risk factors may shed lights on resolving the above issues. Based on the definition of load-strength ratio (LSR), we first identified the four biomechanical variables determining fracture risk, i.e., the risk of fall, impact force, bone quality, and bone geometry. Then, we explored the links between the FRAX clinical risk factors and the biomechanical variables by looking for evidences in the literature. To accurately assess fracture risk, none of the four biomechanical variables can be ignored and their values must be subject-specific. A clinical risk factor contributes to osteoporotic fracture by affecting one or more of the biomechanical variables. A biomechanical variable represents the integral effect from all the clinical risk factors linked to the variable. The clinical risk factors in FRAX mostly stand for bone quality. The other three biomechanical variables are not adequately represented by the clinical risk factors. From the biomechanical viewpoint, most clinical risk factors are interdependent to each other as they affect the same biomechanical variable(s). As biomechanical variables must be expressed in numbers before their use in calculating LSR, the numerical value of a biomechanical variable can be used as a gauge of the linked clinical risk factors to measure their integral effect on fracture risk, which may be more efficient than to study each individual risk factor.
Literature
2.
go back to reference Kanis JA, Hans D, Cooper C, Baim S, Bilezikian JP, Binkley N, Cauley JA, Compston JE, Dawson-Hughes B, El-Hajj Fuleihan G, Johansson H, Leslie WD, Lewiecki EM, Luckey M, Oden A, Papapoulos SE, Poiana C, Rizzoli R, Wahl DA, McCloskey EV (2011) Interpretation and use of FRAX in clinical practice. Osteoporos Int 22:2395–2411PubMedCrossRef Kanis JA, Hans D, Cooper C, Baim S, Bilezikian JP, Binkley N, Cauley JA, Compston JE, Dawson-Hughes B, El-Hajj Fuleihan G, Johansson H, Leslie WD, Lewiecki EM, Luckey M, Oden A, Papapoulos SE, Poiana C, Rizzoli R, Wahl DA, McCloskey EV (2011) Interpretation and use of FRAX in clinical practice. Osteoporos Int 22:2395–2411PubMedCrossRef
3.
go back to reference Kanis JA, Odén A, Johansson H, Borgström F, Ström O, McCloskey EV (2010) FRAX®, a new tool for assessing fracture risk: clinical applications and intervention thresholds. Medicographia 32:33–40 Kanis JA, Odén A, Johansson H, Borgström F, Ström O, McCloskey EV (2010) FRAX®, a new tool for assessing fracture risk: clinical applications and intervention thresholds. Medicographia 32:33–40
4.
go back to reference Lewiecki EM, Watts NB (2009) New guidelines for the prevention and treatment of osteoporosis. South Med J 102:175–179PubMedCrossRef Lewiecki EM, Watts NB (2009) New guidelines for the prevention and treatment of osteoporosis. South Med J 102:175–179PubMedCrossRef
7.
go back to reference Roux S, Cabana F, Carrier N, Beaulieu M, April P-M, Beaulieu M-C, Boire G (2014) The World Health Organization Fracture Risk Assessment Tool (FRAX) underestimates incident and recurrent fractures in consecutive patients with fragility fractures. J Clin Endocrinol Metabolism 99:2400–2408CrossRef Roux S, Cabana F, Carrier N, Beaulieu M, April P-M, Beaulieu M-C, Boire G (2014) The World Health Organization Fracture Risk Assessment Tool (FRAX) underestimates incident and recurrent fractures in consecutive patients with fragility fractures. J Clin Endocrinol Metabolism 99:2400–2408CrossRef
8.
go back to reference Luo Y, Nasirisarvi M, Sun P, Leslie W, Ouyang J (2014) Prediction of impact force in sideways fall of the elderly by DXA-based subject-specific dynamics modeling. Int Biomech 1:1–14CrossRef Luo Y, Nasirisarvi M, Sun P, Leslie W, Ouyang J (2014) Prediction of impact force in sideways fall of the elderly by DXA-based subject-specific dynamics modeling. Int Biomech 1:1–14CrossRef
9.
go back to reference Greenspan SL, Myers ER, Kiel DP, Parker RA, Hayes WC, Resnick NM (1998) Fall direction, bone mineral density, and function: risk factors for hip fracture in frail nursing home elderly. Am J Med 104:539–45PubMedCrossRef Greenspan SL, Myers ER, Kiel DP, Parker RA, Hayes WC, Resnick NM (1998) Fall direction, bone mineral density, and function: risk factors for hip fracture in frail nursing home elderly. Am J Med 104:539–45PubMedCrossRef
10.
go back to reference Verhulp E, van Rietbergen B, Huiskes R (2008) Load distribution in the healthy and osteoporotic human proximal femur during a fall to the side. Bone 42:30–35PubMedCrossRef Verhulp E, van Rietbergen B, Huiskes R (2008) Load distribution in the healthy and osteoporotic human proximal femur during a fall to the side. Bone 42:30–35PubMedCrossRef
12.
go back to reference de Bakker PM, Manske SL, Ebacher V, Oxland TR, Cripton PA, Guy P (2009) During sideways falls proximal femur fractures initiate in the superolateral cortex: evidence from high-speed video of simulated fractures. J Biomech 42:1917–25PubMedCrossRef de Bakker PM, Manske SL, Ebacher V, Oxland TR, Cripton PA, Guy P (2009) During sideways falls proximal femur fractures initiate in the superolateral cortex: evidence from high-speed video of simulated fractures. J Biomech 42:1917–25PubMedCrossRef
13.
go back to reference Nankaku M, Kanzaki H, Tsuboyama T, Nakamura T (2005) Evaluation of hip fracture risk in relation to fall direction. Osteoporos Int 16(11):1315–20PubMedCrossRef Nankaku M, Kanzaki H, Tsuboyama T, Nakamura T (2005) Evaluation of hip fracture risk in relation to fall direction. Osteoporos Int 16(11):1315–20PubMedCrossRef
14.
go back to reference Robinovitch SN, Feldman F, Yang Y, Schonnop R, Leung PM, Sarraf T, Sims-Gould J, Loughin M (2013) Video capture of the circumstances of falls in elderly people residing in long-term care: an observational study. Lancet 381:47–54PubMedCentralPubMedCrossRef Robinovitch SN, Feldman F, Yang Y, Schonnop R, Leung PM, Sarraf T, Sims-Gould J, Loughin M (2013) Video capture of the circumstances of falls in elderly people residing in long-term care: an observational study. Lancet 381:47–54PubMedCentralPubMedCrossRef
15.
go back to reference Pinilla TP, Boardman KC, Bouxsein ML, Myers ER, Hayes WC (1996) Impact direction from a fall influences the failure load of the proximal femur as much as age-related bone loss. Calcif Tissue Int 58:231–235PubMedCrossRef Pinilla TP, Boardman KC, Bouxsein ML, Myers ER, Hayes WC (1996) Impact direction from a fall influences the failure load of the proximal femur as much as age-related bone loss. Calcif Tissue Int 58:231–235PubMedCrossRef
16.
go back to reference Ford CM, Keaveny TM, Hayes WC (1996) The effect of impact direction on the structural capacity of the proximal femur during falls. J Bone Miner Res 11:377–383PubMedCrossRef Ford CM, Keaveny TM, Hayes WC (1996) The effect of impact direction on the structural capacity of the proximal femur during falls. J Bone Miner Res 11:377–383PubMedCrossRef
17.
go back to reference Robinovitch SN, Hayes WC, McMahon TA (1991) Prediction of femoral impact forces in falls on the Hip. ASME J Biomech Eng 113:366–374CrossRef Robinovitch SN, Hayes WC, McMahon TA (1991) Prediction of femoral impact forces in falls on the Hip. ASME J Biomech Eng 113:366–374CrossRef
18.
go back to reference Lotz JC, Cheal EJ, Hayes WC (1995) Stress distributions within the proximal femur during gait and falls: implications for osteoporotic fracture. Osteoporos Int 5:252–261PubMedCrossRef Lotz JC, Cheal EJ, Hayes WC (1995) Stress distributions within the proximal femur during gait and falls: implications for osteoporotic fracture. Osteoporos Int 5:252–261PubMedCrossRef
19.
go back to reference Cumming R, Klineberg R (1994) Fall frequency and characteristics and the risk of hip fractures. J Am Geriatr Soc 42:774–778PubMedCrossRef Cumming R, Klineberg R (1994) Fall frequency and characteristics and the risk of hip fractures. J Am Geriatr Soc 42:774–778PubMedCrossRef
20.
go back to reference Kannus P, Leiponen P, Parkkari J, Palvanen M, Jarvinen M (2006) A sideways fall and hip fracture. Bone 39:383–384PubMedCrossRef Kannus P, Leiponen P, Parkkari J, Palvanen M, Jarvinen M (2006) A sideways fall and hip fracture. Bone 39:383–384PubMedCrossRef
21.
go back to reference Alonso CG, Curiel MD, Carranza FH, Cano RP, Perez AD, and the Multicenter Project for Research in Osteoporosis (2000) Femoral bone mineral density, neck-shaft angle and mean femoral neck width as predictors of hip fracture in men and women. Osteoporosis Int 11:714–720CrossRef Alonso CG, Curiel MD, Carranza FH, Cano RP, Perez AD, and the Multicenter Project for Research in Osteoporosis (2000) Femoral bone mineral density, neck-shaft angle and mean femoral neck width as predictors of hip fracture in men and women. Osteoporosis Int 11:714–720CrossRef
22.
go back to reference Calis HT, Eryavuz M, Calis M (2004) Comparison of femoral geometry among cases with and without hip fractures. Yonsei Med J 45:901–7PubMedCrossRef Calis HT, Eryavuz M, Calis M (2004) Comparison of femoral geometry among cases with and without hip fractures. Yonsei Med J 45:901–7PubMedCrossRef
23.
go back to reference Karlsson KM, Sernbo I, Obrant KJ, RedlundJohnell I, Johnell O (1996) Femoral neck geometry and radiographic signs of osteoporosis as predictors of hip fracture. Bone 18:327–30PubMedCrossRef Karlsson KM, Sernbo I, Obrant KJ, RedlundJohnell I, Johnell O (1996) Femoral neck geometry and radiographic signs of osteoporosis as predictors of hip fracture. Bone 18:327–30PubMedCrossRef
24.
go back to reference El-Kaissi S, Pasco JA, Henry MJ, Panahi S, Nicholson JG, Nicholson GC et al (2005) Femoral neck geometry and hip fracture risk: the geelong osteoporosis study. Osteoporos Int 16:1299–303PubMedCrossRef El-Kaissi S, Pasco JA, Henry MJ, Panahi S, Nicholson JG, Nicholson GC et al (2005) Femoral neck geometry and hip fracture risk: the geelong osteoporosis study. Osteoporos Int 16:1299–303PubMedCrossRef
25.
go back to reference Boonen S, Koutri R, Dequeker J, Aerssens J, Lowet G, Nijs J et al (1995) Measurement of femoral geometry in Type-I and Type-II osteoporosis—differences in hip axis length consistent with heterogeneity in the pathogenesis of osteoporotic fractures. J Bone Miner Res 10:1908–12PubMedCrossRef Boonen S, Koutri R, Dequeker J, Aerssens J, Lowet G, Nijs J et al (1995) Measurement of femoral geometry in Type-I and Type-II osteoporosis—differences in hip axis length consistent with heterogeneity in the pathogenesis of osteoporotic fractures. J Bone Miner Res 10:1908–12PubMedCrossRef
26.
go back to reference Gnudi S, Ripamonti C, Gualtieri G, Malavolta N (1999) Geometry of proximal femur in the prediction of hip fracture in osteoporotic women. Br J Radiol 72:729–33PubMedCrossRef Gnudi S, Ripamonti C, Gualtieri G, Malavolta N (1999) Geometry of proximal femur in the prediction of hip fracture in osteoporotic women. Br J Radiol 72:729–33PubMedCrossRef
27.
go back to reference Rosso R, Mikhail MB (2000) Hip axis length in an Italian osteoporotic population. Br J Radiol 73:969–72PubMedCrossRef Rosso R, Mikhail MB (2000) Hip axis length in an Italian osteoporotic population. Br J Radiol 73:969–72PubMedCrossRef
28.
go back to reference Bergot C, Bousson V, Meunier A, Laval-Jeantet M, Laredo JD (2002) Hip fracture risk and proximal femur geometry from DXA scans. Osteoporos Int 13:542–50PubMedCrossRef Bergot C, Bousson V, Meunier A, Laval-Jeantet M, Laredo JD (2002) Hip fracture risk and proximal femur geometry from DXA scans. Osteoporos Int 13:542–50PubMedCrossRef
29.
go back to reference Gnudi S, Ripamonti C, Lisi L, Fini M, Giardino R, Giavaresi G (2002) Proximal femur geometry to detect and distinguish femoral neck fractures from trochanteric fractures in postmenopausal women. Osteoporos Int 13:69–73PubMedCrossRef Gnudi S, Ripamonti C, Lisi L, Fini M, Giardino R, Giavaresi G (2002) Proximal femur geometry to detect and distinguish femoral neck fractures from trochanteric fractures in postmenopausal women. Osteoporos Int 13:69–73PubMedCrossRef
30.
go back to reference Frisoli J, Paula AP, Pinheiro M, Szejnfeld VL, Monte Piovezan R, Takata E et al (2005) Hip axis length as an independent risk factor for hip fracture independently of femural bone mineral density in Caucasian elderly Brazilian women. Bone 37:871–5PubMedCrossRef Frisoli J, Paula AP, Pinheiro M, Szejnfeld VL, Monte Piovezan R, Takata E et al (2005) Hip axis length as an independent risk factor for hip fracture independently of femural bone mineral density in Caucasian elderly Brazilian women. Bone 37:871–5PubMedCrossRef
31.
go back to reference Faulkner KG, Wacker WK, Barden HS, Simonelli C, Burke S, Ragi PK et al (2006) Femur strength index predicts hip fracture independent of bone density and hip axis length. Osteoporos Int 17:593–9PubMedCrossRef Faulkner KG, Wacker WK, Barden HS, Simonelli C, Burke S, Ragi PK et al (2006) Femur strength index predicts hip fracture independent of bone density and hip axis length. Osteoporos Int 17:593–9PubMedCrossRef
32.
go back to reference Faulkner KG, Cummings SR, Black D, Palermo L, Glüer C-C, Genant HK (1993) Simple measurement of femoral geometry predicts hip fracture: the study of osteoporotic fractures. J Bone Miner Res 8:1211–7PubMedCrossRef Faulkner KG, Cummings SR, Black D, Palermo L, Glüer C-C, Genant HK (1993) Simple measurement of femoral geometry predicts hip fracture: the study of osteoporotic fractures. J Bone Miner Res 8:1211–7PubMedCrossRef
33.
go back to reference Khalili H, Huang ES, Jacobson BC, Camargo CA Jr, Feskanich D, Chan AT (2012) Use of proton pump inhibitors and risk of hip fracture in relation to dietary and lifestyle factors: a prospective cohort study. BMJ 344, e372PubMedCentralPubMedCrossRef Khalili H, Huang ES, Jacobson BC, Camargo CA Jr, Feskanich D, Chan AT (2012) Use of proton pump inhibitors and risk of hip fracture in relation to dietary and lifestyle factors: a prospective cohort study. BMJ 344, e372PubMedCentralPubMedCrossRef
34.
go back to reference Gray SL, LaCroix AZ, Larson J, Robbins J, Cauley JA, Manson JE, Chen Z (2010) Proton pump inhibitor use, hip fracture, and change in bone mineral density in postmenopausal women: results from the Women’s Health Initiative. Arch Intern Med 170:765–71PubMedCentralPubMedCrossRef Gray SL, LaCroix AZ, Larson J, Robbins J, Cauley JA, Manson JE, Chen Z (2010) Proton pump inhibitor use, hip fracture, and change in bone mineral density in postmenopausal women: results from the Women’s Health Initiative. Arch Intern Med 170:765–71PubMedCentralPubMedCrossRef
35.
go back to reference Fraser LA, Leslie WD, Targownik LE, Papaioannou A, Adachi JD, and (CaMos Research Group) (2013) The effect of proton pump inhibitors on fracture risk: report from the Canadian multicenter osteoporosis study. Osteoporos Int 24:1161–8PubMedCrossRef Fraser LA, Leslie WD, Targownik LE, Papaioannou A, Adachi JD, and (CaMos Research Group) (2013) The effect of proton pump inhibitors on fracture risk: report from the Canadian multicenter osteoporosis study. Osteoporos Int 24:1161–8PubMedCrossRef
36.
go back to reference Carbone LD, Tylavsky FA, Cauley JA, Harris TB, Lang TF, Bauer DC, Barrow KD, Kritchevsky SB (2003) Association between bone mineral density and the use of nonsteroidal anti-inflammatory drugs and aspirin: impact of cyclooxygenase selectivity. J Bone Miner Res 18:1795–1802PubMedCrossRef Carbone LD, Tylavsky FA, Cauley JA, Harris TB, Lang TF, Bauer DC, Barrow KD, Kritchevsky SB (2003) Association between bone mineral density and the use of nonsteroidal anti-inflammatory drugs and aspirin: impact of cyclooxygenase selectivity. J Bone Miner Res 18:1795–1802PubMedCrossRef
37.
go back to reference Cobb KL, Kelsey JL, Sidney S, Ettinger B, Lewis CE (2002) Oral contraceptives and bone mineral density in white and black women in CARDIA. Osteoporos Int 13:893–900PubMedCrossRef Cobb KL, Kelsey JL, Sidney S, Ettinger B, Lewis CE (2002) Oral contraceptives and bone mineral density in white and black women in CARDIA. Osteoporos Int 13:893–900PubMedCrossRef
38.
go back to reference Rapuri PB, Gallagher JC, Kinyamu HK, Ryschon KL (2001) Caffeine intake increases the rate of bone loss in elderly women and interacts with vitamin D receptor genotypes. Am J Clin Nutr 74:694–700PubMed Rapuri PB, Gallagher JC, Kinyamu HK, Ryschon KL (2001) Caffeine intake increases the rate of bone loss in elderly women and interacts with vitamin D receptor genotypes. Am J Clin Nutr 74:694–700PubMed
39.
go back to reference Carbone LD, Bush AJ, Barrow KD, Kang AH (2003) The relationship of sodium intake to calcium and sodium excretion and bone mineral density of the hip in postmenopausal African-American and Caucasian women. J Bone Miner Metab 21:415–420PubMedCrossRef Carbone LD, Bush AJ, Barrow KD, Kang AH (2003) The relationship of sodium intake to calcium and sodium excretion and bone mineral density of the hip in postmenopausal African-American and Caucasian women. J Bone Miner Metab 21:415–420PubMedCrossRef
40.
go back to reference Corwin RL, Hartman TJ, Maczuga SA, Graubard BI (2006) Dietary saturated fat intake is inversely associated with bone density in humans: analysis of NHANES III. J Nutr 136:159–165PubMed Corwin RL, Hartman TJ, Maczuga SA, Graubard BI (2006) Dietary saturated fat intake is inversely associated with bone density in humans: analysis of NHANES III. J Nutr 136:159–165PubMed
41.
go back to reference McCabe LD, Martin BR, McCabe GP, Johnston CC, Weaver CM, Peacock M (2004) Dairy intakes affect bone density in the elderly. Am J Clin Nutr 80:1066–1074PubMed McCabe LD, Martin BR, McCabe GP, Johnston CC, Weaver CM, Peacock M (2004) Dairy intakes affect bone density in the elderly. Am J Clin Nutr 80:1066–1074PubMed
42.
go back to reference Opotowsky AR, Bilezikian JP (2003) Racial differences in the effect of early milk consumption on peak and postmenopausal bone mineral density. J Bone Miner Res 18:1978–1988PubMedCrossRef Opotowsky AR, Bilezikian JP (2003) Racial differences in the effect of early milk consumption on peak and postmenopausal bone mineral density. J Bone Miner Res 18:1978–1988PubMedCrossRef
43.
go back to reference Ryder KM, Shorr RI, Bush AJ, Kritchevsky SB, Harris T, Stone K, Cauley JA, Tylavsky FA (2005) Magnesium intake from food and supplements is associated with bone mineral density in healthy older white subjects. J Am Geriatr Soc 53:1875–1880PubMedCrossRef Ryder KM, Shorr RI, Bush AJ, Kritchevsky SB, Harris T, Stone K, Cauley JA, Tylavsky FA (2005) Magnesium intake from food and supplements is associated with bone mineral density in healthy older white subjects. J Am Geriatr Soc 53:1875–1880PubMedCrossRef
44.
go back to reference Pescatello LS, Murphy DM, Anderson D, Costanzo D, Dulipsingh L, De Souza MJ (2002) Daily physical movement and bone mineral density among a mixed racial cohort of women. Med Science Sports Exercise 34:1966–1970CrossRef Pescatello LS, Murphy DM, Anderson D, Costanzo D, Dulipsingh L, De Souza MJ (2002) Daily physical movement and bone mineral density among a mixed racial cohort of women. Med Science Sports Exercise 34:1966–1970CrossRef
45.
go back to reference JP, Joseph Castro LA, Shin JJ, Arora SK, Nicasio J, Shatzkes J, Raklyar I, Erlikh I, Pantone V, Bahtiyar G, Chandler L, Pabon L, Choudhry S, Ghadiri N, Gosukonda P, Muniyappa R, von Gicyzki H, McFarlane SI (2005) Differential effect of obesity on bone mineral density in White, Hispanic, and African American women: a cross-sectional study. Nutr Metab, 2:2–9 JP, Joseph Castro LA, Shin JJ, Arora SK, Nicasio J, Shatzkes J, Raklyar I, Erlikh I, Pantone V, Bahtiyar G, Chandler L, Pabon L, Choudhry S, Ghadiri N, Gosukonda P, Muniyappa R, von Gicyzki H, McFarlane SI (2005) Differential effect of obesity on bone mineral density in White, Hispanic, and African American women: a cross-sectional study. Nutr Metab, 2:2–9
46.
go back to reference Schwartz AV, Sellmeyer DE, Strotmeyer ES, Tylavsky FA, Feingold KR, Resnick HE, Shorr RI, Nevitt MC, Black DM, Cauley JA, Cummings SR, Harris TB (2005) Diabetes and bone loss at the hip in older black and white adults. J Bone Miner Res 20:596–603PubMedCrossRef Schwartz AV, Sellmeyer DE, Strotmeyer ES, Tylavsky FA, Feingold KR, Resnick HE, Shorr RI, Nevitt MC, Black DM, Cauley JA, Cummings SR, Harris TB (2005) Diabetes and bone loss at the hip in older black and white adults. J Bone Miner Res 20:596–603PubMedCrossRef
47.
go back to reference Lauderdale DS, Rathouz PJ (2003) Does bone mineralization reflect economic conditions? An example using a national US sample. Econ Hum Biol 1:91–104PubMedCrossRef Lauderdale DS, Rathouz PJ (2003) Does bone mineralization reflect economic conditions? An example using a national US sample. Econ Hum Biol 1:91–104PubMedCrossRef
48.
go back to reference Dhanwal DK, Cooper C, Dennison EM (2010) Geographic Variation in Osteoporotic Hip Fracture Incidence: The Growing Importance of Asian Influences in Coming Decades. J Ostoporosis, (Article ID 757102):5 pages Dhanwal DK, Cooper C, Dennison EM (2010) Geographic Variation in Osteoporotic Hip Fracture Incidence: The Growing Importance of Asian Influences in Coming Decades. J Ostoporosis, (Article ID 757102):5 pages
49.
go back to reference Cooper C, Cole ZA, Holroyd CR, Earl SC, Harvey NC, Dennison EM, Melton LJ, Cummings SR, Kanis JA, The IOF CSAWorking Group on Fracture Epidemiolog (2011) Secular trends in the incidence of hip and other osteoporotic fractures. Osteoporos Int 22:1277–1288PubMedCentralPubMedCrossRef Cooper C, Cole ZA, Holroyd CR, Earl SC, Harvey NC, Dennison EM, Melton LJ, Cummings SR, Kanis JA, The IOF CSAWorking Group on Fracture Epidemiolog (2011) Secular trends in the incidence of hip and other osteoporotic fractures. Osteoporos Int 22:1277–1288PubMedCentralPubMedCrossRef
50.
go back to reference Wright NC, Saag KG, Curtis JR, Smith WK, Kilgore ML, Morrisey MA, Yun H, Zhang J, Delzell ES (2012) Recent trends in Hip fracture rates by race/ethnicity among older US adults. J Bone Miner Res 27:2325–2332PubMedCrossRef Wright NC, Saag KG, Curtis JR, Smith WK, Kilgore ML, Morrisey MA, Yun H, Zhang J, Delzell ES (2012) Recent trends in Hip fracture rates by race/ethnicity among older US adults. J Bone Miner Res 27:2325–2332PubMedCrossRef
51.
go back to reference Maravic M, Taupin P, Landais P, Roux C (2011) Change in hip fracture incidence over the last 6 years in France. Osteoporos Int 22:797–801PubMedCrossRef Maravic M, Taupin P, Landais P, Roux C (2011) Change in hip fracture incidence over the last 6 years in France. Osteoporos Int 22:797–801PubMedCrossRef
52.
go back to reference Dhanwal D, Dennison E, Harvey N, Cooper C (2011) Epidemiology of hip fracture: worldwide geographic variation. Indian J Orthopaedics 45:15–22CrossRef Dhanwal D, Dennison E, Harvey N, Cooper C (2011) Epidemiology of hip fracture: worldwide geographic variation. Indian J Orthopaedics 45:15–22CrossRef
53.
go back to reference Lim S, Koo BK, Lee EJ, Park JH, Kim MH, Shin KH, Ha YC, Cho NH, Shin CS (2008) J Bone Miner Metab 26:400–405PubMedCrossRef Lim S, Koo BK, Lee EJ, Park JH, Kim MH, Shin KH, Ha YC, Cho NH, Shin CS (2008) J Bone Miner Metab 26:400–405PubMedCrossRef
54.
go back to reference Xia WB, He SL, Xu L, Liu AM, Jiang Y, Li M, Wang O, Xing XP, Sun Y, Cummings SR (2012) Rapidly increasing rates of hip fracture in Beijing, China. J Bone Miner Res 27:125–9PubMedCrossRef Xia WB, He SL, Xu L, Liu AM, Jiang Y, Li M, Wang O, Xing XP, Sun Y, Cummings SR (2012) Rapidly increasing rates of hip fracture in Beijing, China. J Bone Miner Res 27:125–9PubMedCrossRef
56.
go back to reference Johansson H, Kanis JA, Odén A, McCloskey E, Chapurlat RD, Christiansen C, Cummings SR, Diez-Perez A, Eisman JA, Fujiwara S, Glüer CC, Goltzman D, Hans D, Khaw KT, Krieg MA, Kröger H, LaCroix AZ, Lau E, Leslie WD, Mellström D, 3rd Melton LJ, O’Neill TW, Pasco JA, Prior JC, Reid DM, Rivadeneira F, van Staa T, Yoshimura N, Zillikens MC (2014) A meta-analysis of the association of fracture risk and body mass index in women. J Bone Miner Res 29:223–233PubMedCrossRef Johansson H, Kanis JA, Odén A, McCloskey E, Chapurlat RD, Christiansen C, Cummings SR, Diez-Perez A, Eisman JA, Fujiwara S, Glüer CC, Goltzman D, Hans D, Khaw KT, Krieg MA, Kröger H, LaCroix AZ, Lau E, Leslie WD, Mellström D, 3rd Melton LJ, O’Neill TW, Pasco JA, Prior JC, Reid DM, Rivadeneira F, van Staa T, Yoshimura N, Zillikens MC (2014) A meta-analysis of the association of fracture risk and body mass index in women. J Bone Miner Res 29:223–233PubMedCrossRef
57.
go back to reference Premaor MO, Pilbrow L, Tonkin C, Parker RA, Compston J (2010) Obesity and fractures in postmenopausal women. J Bone Miner Res 25:292–297PubMedCrossRef Premaor MO, Pilbrow L, Tonkin C, Parker RA, Compston J (2010) Obesity and fractures in postmenopausal women. J Bone Miner Res 25:292–297PubMedCrossRef
58.
go back to reference Compston JE, Watts NB, Chapurlat R, Cooper C, Boonen S, Greenspan S, Pfeilschifter J, Silverman S, Díez-Pérez A, Lindsay R, Saag KG, Netelenbos JC, Gehlbach S, Hooven FH, Flahive J, Adachi JD, Rossini M, Lacroix AZ, Roux C, Sambrook PN, Siris ES, Glow Investigators (2011) Obesity is not protective against fracture in postmenopausal women: GLOW. Am J Med 124:1043–1050PubMedCrossRef Compston JE, Watts NB, Chapurlat R, Cooper C, Boonen S, Greenspan S, Pfeilschifter J, Silverman S, Díez-Pérez A, Lindsay R, Saag KG, Netelenbos JC, Gehlbach S, Hooven FH, Flahive J, Adachi JD, Rossini M, Lacroix AZ, Roux C, Sambrook PN, Siris ES, Glow Investigators (2011) Obesity is not protective against fracture in postmenopausal women: GLOW. Am J Med 124:1043–1050PubMedCrossRef
59.
go back to reference 3rd Melton LJ, Riggs BL, van Lenthe GH, Achenbach SJ, Müller R, Bouxsein ML, Amin S, Atkinson EJ, Khosla S (2007) Contribution of in vivo structural measurements and load/strength ratios to the determination of forearm fracture risk in postmenopausal women. J Bone Miner Res 22:1442–8PubMedCrossRef 3rd Melton LJ, Riggs BL, van Lenthe GH, Achenbach SJ, Müller R, Bouxsein ML, Amin S, Atkinson EJ, Khosla S (2007) Contribution of in vivo structural measurements and load/strength ratios to the determination of forearm fracture risk in postmenopausal women. J Bone Miner Res 22:1442–8PubMedCrossRef
60.
go back to reference Dufour AB, Roberts B, Broe KE, Kiel DP, Bouxsein ML, Hannan MT (2012) The factor-of-risk biomechanical approach predicts hip fracture in men and women: the Framingham study. Osteoporos Int 23:513–520PubMedCentralPubMedCrossRef Dufour AB, Roberts B, Broe KE, Kiel DP, Bouxsein ML, Hannan MT (2012) The factor-of-risk biomechanical approach predicts hip fracture in men and women: the Framingham study. Osteoporos Int 23:513–520PubMedCentralPubMedCrossRef
61.
go back to reference Filipov O (2014) Femoral neck fractures – biological aspects and risk factors. J IMAB 20:513–515 Filipov O (2014) Femoral neck fractures – biological aspects and risk factors. J IMAB 20:513–515
63.
go back to reference Orwoll ES, Marshall LM, Nielson CM et al (2009) Finite element analysis of the proximal femur and hip fracture risk in older men. J Bone Miner Res 24:475–483PubMedCentralPubMedCrossRef Orwoll ES, Marshall LM, Nielson CM et al (2009) Finite element analysis of the proximal femur and hip fracture risk in older men. J Bone Miner Res 24:475–483PubMedCentralPubMedCrossRef
64.
go back to reference International Bone and Mineral Society (2013) DXA plus measurement of bone strength predict fracture risk more accurately. IBMS BoneKEy Rep International Bone and Mineral Society (2013) DXA plus measurement of bone strength predict fracture risk more accurately. IBMS BoneKEy Rep
65.
go back to reference Dufour AB, Roberts B, Kiel DP, Bouxsein ML, Hannan MT (2009) A Biomechanical Approach Predicts Hip Fracture Independent of Bone Mineral Density (BMD) in Women: The Framingham Osteoporosis Study. In Arthritis & Rheumatism, volume 60, Philadelphia, October 16–21 2009. The 2009 ACR/ARHP Annual Scientific Meeting Dufour AB, Roberts B, Kiel DP, Bouxsein ML, Hannan MT (2009) A Biomechanical Approach Predicts Hip Fracture Independent of Bone Mineral Density (BMD) in Women: The Framingham Osteoporosis Study. In Arthritis & Rheumatism, volume 60, Philadelphia, October 16–21 2009. The 2009 ACR/ARHP Annual Scientific Meeting
66.
67.
go back to reference Hayes WC, Piazza SJ, Zysset PK (1991) Biomechanics of fracture risk prediction of the hip and spine by quantitative computed tomography. Radiol Clin North Am 29:1–18PubMed Hayes WC, Piazza SJ, Zysset PK (1991) Biomechanics of fracture risk prediction of the hip and spine by quantitative computed tomography. Radiol Clin North Am 29:1–18PubMed
68.
go back to reference Duan Y, Seeman E, Turner CH (2001) The biomechanical basis of vertebral body fragility in men and women. J Bone Miner Res 16:2276–2283PubMedCrossRef Duan Y, Seeman E, Turner CH (2001) The biomechanical basis of vertebral body fragility in men and women. J Bone Miner Res 16:2276–2283PubMedCrossRef
69.
go back to reference Duan Y, Duboeuf F, Munoz F, Delmas PD, Seeman E (2006) The fracture risk index and bone mineral density as predictors of vertebral structural failure. Osteoporos Int 17:54–60PubMedCrossRef Duan Y, Duboeuf F, Munoz F, Delmas PD, Seeman E (2006) The fracture risk index and bone mineral density as predictors of vertebral structural failure. Osteoporos Int 17:54–60PubMedCrossRef
70.
go back to reference Luo Y, Ferdous Z, Leslie WD (2011) A preliminary dual-energy X-ray absorptiometry-based finite element model for assessing osteoporotic hip fracture risk. J Eng Med 225:1188–1195CrossRef Luo Y, Ferdous Z, Leslie WD (2011) A preliminary dual-energy X-ray absorptiometry-based finite element model for assessing osteoporotic hip fracture risk. J Eng Med 225:1188–1195CrossRef
71.
go back to reference Luo Y, Ferdous Z, Leslie WD (2013) Precision study of DXA-based patient-specific finite element modeling for assessing hip fracture risk. Int J Numerical Methods Biomed Eng 29(5):615–629CrossRef Luo Y, Ferdous Z, Leslie WD (2013) Precision study of DXA-based patient-specific finite element modeling for assessing hip fracture risk. Int J Numerical Methods Biomed Eng 29(5):615–629CrossRef
72.
go back to reference Davidenkoff NN (1934) Allowable working stresses under impact. Trans ASME 56:97–107 Davidenkoff NN (1934) Allowable working stresses under impact. Trans ASME 56:97–107
73.
go back to reference Fiodorovich V (1932) Stresses allowable in wooden structures. Vestnik Standartizatziyi 1(37):26–29 Fiodorovich V (1932) Stresses allowable in wooden structures. Vestnik Standartizatziyi 1(37):26–29
74.
go back to reference Johnson JB (1930) Allowable stresses in welded aircraft. Welding 1:309–312 Johnson JB (1930) Allowable stresses in welded aircraft. Welding 1:309–312
75.
go back to reference Miller SW (1928) Maximum allowable working fiber stresses in welded structures. Am Welding Soc – J 7:21–27 Miller SW (1928) Maximum allowable working fiber stresses in welded structures. Am Welding Soc – J 7:21–27
76.
go back to reference Albert CD (1922) Factors of safety and allowable stress. Am Mach 57:54–57 Albert CD (1922) Factors of safety and allowable stress. Am Mach 57:54–57
77.
go back to reference Lash SD, Brison JW (1950) Ultimate strength of reinforced concrete beams. Am Concrete Institute – J 21:457–470 Lash SD, Brison JW (1950) Ultimate strength of reinforced concrete beams. Am Concrete Institute – J 21:457–470
78.
go back to reference Berry JS (1943) Ultimate strength formulae for concrete columns. Civ Eng 38:103–104 Berry JS (1943) Ultimate strength formulae for concrete columns. Civ Eng 38:103–104
79.
go back to reference Mononobe N (1934) Ultimate strength of building structures against earthquake. Tokyo Imperial Univ – Earthquake Res Institute – Bulletin 12:35–43 Mononobe N (1934) Ultimate strength of building structures against earthquake. Tokyo Imperial Univ – Earthquake Res Institute – Bulletin 12:35–43
80.
go back to reference Newlin JA, Trayer GW (1931) A method of calculating the ultimate strength of continuous beams. National Advisory Committee for Aeronautics – Reports, page (28 pages) Newlin JA, Trayer GW (1931) A method of calculating the ultimate strength of continuous beams. National Advisory Committee for Aeronautics – Reports, page (28 pages)
81.
go back to reference Johnson JB (1897) The ultimate strength of concrete-steel beams. Eng News Johnson JB (1897) The ultimate strength of concrete-steel beams. Eng News
82.
go back to reference Michelson JD, Myers A, Jinnah R, Cox Q, Van Natta M (1995) Epidemiology of hip fractures among the elderly: risk factors for fracture type. Clin Orthopaedics Related Res 311:129–135 Michelson JD, Myers A, Jinnah R, Cox Q, Van Natta M (1995) Epidemiology of hip fractures among the elderly: risk factors for fracture type. Clin Orthopaedics Related Res 311:129–135
83.
go back to reference Kopperdahl DL, Morgan EF et al (2002) Quantitative computed tomography estimates of the mechanical properties of human vertebral trabecular bone. J Orthopaed Res 20:801–805CrossRef Kopperdahl DL, Morgan EF et al (2002) Quantitative computed tomography estimates of the mechanical properties of human vertebral trabecular bone. J Orthopaed Res 20:801–805CrossRef
84.
85.
go back to reference Wirtz DC, Schiffers N, Pandorf T, Radermacher KS, Weichert D, Forst R (2000) Critical evaluation of known bone material properties to realize anisotropic fe-simulation of the proximal femur. J Biomech 33:1325–1330PubMedCrossRef Wirtz DC, Schiffers N, Pandorf T, Radermacher KS, Weichert D, Forst R (2000) Critical evaluation of known bone material properties to realize anisotropic fe-simulation of the proximal femur. J Biomech 33:1325–1330PubMedCrossRef
86.
go back to reference Morgan EF, Bayraktar HH, Keaveny TM (2003) Trabecular bone modulus–density relationships depend on anatomic site. J Biomech, 36 Morgan EF, Bayraktar HH, Keaveny TM (2003) Trabecular bone modulus–density relationships depend on anatomic site. J Biomech, 36
87.
go back to reference Snyder SM, Schneider E (1991) Estimation of mechanical properties of cortical bone by computed tomography. J Orthop Res 9:422–431PubMedCrossRef Snyder SM, Schneider E (1991) Estimation of mechanical properties of cortical bone by computed tomography. J Orthop Res 9:422–431PubMedCrossRef
88.
go back to reference Wachter NJ, Krischak GD, Mentzel M, Sarkar MR, Ebinger T, Kinzl L, Claes L, Augat P (2002) Correlation of bone mineral density with strength and microstructural parameters of cortical bone in vitro. Bone 31:90–95PubMedCrossRef Wachter NJ, Krischak GD, Mentzel M, Sarkar MR, Ebinger T, Kinzl L, Claes L, Augat P (2002) Correlation of bone mineral density with strength and microstructural parameters of cortical bone in vitro. Bone 31:90–95PubMedCrossRef
89.
90.
go back to reference Juszczyk MM, Cristofolini L, Viceconti M (2011) The human proximal femur behaves linearly elastic up to failure under physiological loading conditions. J Biomech 44:2259–66PubMedCrossRef Juszczyk MM, Cristofolini L, Viceconti M (2011) The human proximal femur behaves linearly elastic up to failure under physiological loading conditions. J Biomech 44:2259–66PubMedCrossRef
91.
go back to reference Helgason B, Perilli E et al (2008) Mathematical relationships between bone density and mechanical properties: a literature review. Clin Biomech 23:135–146CrossRef Helgason B, Perilli E et al (2008) Mathematical relationships between bone density and mechanical properties: a literature review. Clin Biomech 23:135–146CrossRef
92.
go back to reference Oliver D, Britton M, Seed P, Martin FC, Hopper AH (1997) Development and evaluation of evidence based risk assessment tool (STRATIFY) to predict which elderly inpatients will fall: case–control and cohort studies. Br Med J 315:1049–1053CrossRef Oliver D, Britton M, Seed P, Martin FC, Hopper AH (1997) Development and evaluation of evidence based risk assessment tool (STRATIFY) to predict which elderly inpatients will fall: case–control and cohort studies. Br Med J 315:1049–1053CrossRef
93.
go back to reference Close J, Hooper R, Glucksman E, Jackson S, Swift C (2003) Predictors of falls in a high risk population: results from the prevention of falls in the elderly trial (PROFET). Emergency Med J 20:421–425CrossRef Close J, Hooper R, Glucksman E, Jackson S, Swift C (2003) Predictors of falls in a high risk population: results from the prevention of falls in the elderly trial (PROFET). Emergency Med J 20:421–425CrossRef
94.
go back to reference Nandy S, Parsons S, Cryer C, Underwood M, Rashbrook E, Carter Y, Eldridge S, Close J, Skelton D, Taylor S, Feder G, Falls Prevention Pilot Steering Group (2004) Development and preliminary examination of the predictive validity of the falls risk assessment tool (FRAT) for use in primary care. J Public Health 26:138–43CrossRef Nandy S, Parsons S, Cryer C, Underwood M, Rashbrook E, Carter Y, Eldridge S, Close J, Skelton D, Taylor S, Feder G, Falls Prevention Pilot Steering Group (2004) Development and preliminary examination of the predictive validity of the falls risk assessment tool (FRAT) for use in primary care. J Public Health 26:138–43CrossRef
95.
go back to reference Tromp AM, Pluijm SM, Smit JH, Deeg DJ, Bouter LM, Lips P (2001) Fall-risk screening test: a prospective study on predictors for falls in community-dwelling elderly. J Clin Epidemiol 54:837–44PubMedCrossRef Tromp AM, Pluijm SM, Smit JH, Deeg DJ, Bouter LM, Lips P (2001) Fall-risk screening test: a prospective study on predictors for falls in community-dwelling elderly. J Clin Epidemiol 54:837–44PubMedCrossRef
96.
go back to reference Raîche M, Hébert R, Prince F, Corriveau H (2000) Screening older adults at risk of falling with the Tinetti balance scale. Lancet 356:1001–2PubMedCrossRef Raîche M, Hébert R, Prince F, Corriveau H (2000) Screening older adults at risk of falling with the Tinetti balance scale. Lancet 356:1001–2PubMedCrossRef
97.
go back to reference Berg KO, Wood-Dauphinee SL, Williams JI, Maki B (1992) Measuring balance in the elderly: validation of an instrument. Can J Public Health 83(Suppl 2):S7–11PubMed Berg KO, Wood-Dauphinee SL, Williams JI, Maki B (1992) Measuring balance in the elderly: validation of an instrument. Can J Public Health 83(Suppl 2):S7–11PubMed
98.
go back to reference Podsiadlo D, Richardson S (1991) The timed “Up & Go”: a test of basic functional mobility for frail elderly persons. J Am Geriatr Soc 39:142–8PubMedCrossRef Podsiadlo D, Richardson S (1991) The timed “Up & Go”: a test of basic functional mobility for frail elderly persons. J Am Geriatr Soc 39:142–8PubMedCrossRef
99.
go back to reference Lundin-Olsson L, Nyberg L, Gustafson Y (2000) The mobility interaction fall chart. Physiother Res Int 5:190–201PubMedCrossRef Lundin-Olsson L, Nyberg L, Gustafson Y (2000) The mobility interaction fall chart. Physiother Res Int 5:190–201PubMedCrossRef
100.
go back to reference Lundin-Olsson L, Jensen J, Nyberg L, Gustafson Y (2003) Predicting falls in residential care by a risk assessment tool, staff judgement, and history of falls. Aging Clin Exp Res 15:51–9PubMedCrossRef Lundin-Olsson L, Jensen J, Nyberg L, Gustafson Y (2003) Predicting falls in residential care by a risk assessment tool, staff judgement, and history of falls. Aging Clin Exp Res 15:51–9PubMedCrossRef
101.
go back to reference Stel VS, Pluijm SM, Deeg DJ, Smit JH, Bouter LM, Lips P (2003) A classification tree for predicting recurrent falling in community-dwelling older persons. J Am Geriatr Soc 51:1356–64PubMedCrossRef Stel VS, Pluijm SM, Deeg DJ, Smit JH, Bouter LM, Lips P (2003) A classification tree for predicting recurrent falling in community-dwelling older persons. J Am Geriatr Soc 51:1356–64PubMedCrossRef
102.
go back to reference Laessoe U, Hoeck HC, Simonsen O, Sinkjaer T, Voigt M (2007) Fall risk in an active elderly population–can it be assessed? J Negat Results Biomed, 26(6:2) Laessoe U, Hoeck HC, Simonsen O, Sinkjaer T, Voigt M (2007) Fall risk in an active elderly population–can it be assessed? J Negat Results Biomed, 26(6:2)
103.
go back to reference Graafmans WC, Ooms ME, Hofsfee HMA, Bezemer PD, Bouter LM, Lips P. Falls in the elderly: A prospective study of risk factors and risk profiles. Am J Epidemiol, 143:1129–1136 Graafmans WC, Ooms ME, Hofsfee HMA, Bezemer PD, Bouter LM, Lips P. Falls in the elderly: A prospective study of risk factors and risk profiles. Am J Epidemiol, 143:1129–1136
104.
go back to reference Lockhart TE, Yeoh HT, Soangra R, Jongprasithporn M, Zhang J, Wu X, Ghosh A (2012) Non-invasive fall risk assessment in community dwelling elderly with wireless inertial measurement units. Biomed Sci Instrum 48:260–7PubMedCentralPubMed Lockhart TE, Yeoh HT, Soangra R, Jongprasithporn M, Zhang J, Wu X, Ghosh A (2012) Non-invasive fall risk assessment in community dwelling elderly with wireless inertial measurement units. Biomed Sci Instrum 48:260–7PubMedCentralPubMed
105.
go back to reference Todd C, Skelton D (2004) What are the main risk factors for falls among older people and what are the most effective interventions to prevent these falls? Technical report, WHO Regional Office for Europe, Copenhagen, 2004. (Health Evidence Network report; http://www.euro.who.int/document/E82552.pdf) Todd C, Skelton D (2004) What are the main risk factors for falls among older people and what are the most effective interventions to prevent these falls? Technical report, WHO Regional Office for Europe, Copenhagen, 2004. (Health Evidence Network report; http://​www.​euro.​who.​int/​document/​E82552.​pdf)
106.
go back to reference Feldman F, Robinovitch SN (2007) Reducing hip fracture risk during sideways falls: evidence in young adults of the protective effects of impact to the hands and stepping. J Biomech 40:2612–2618PubMedCrossRef Feldman F, Robinovitch SN (2007) Reducing hip fracture risk during sideways falls: evidence in young adults of the protective effects of impact to the hands and stepping. J Biomech 40:2612–2618PubMedCrossRef
107.
go back to reference Van den Kroonenberg AJ, Hayes WC, McMahon TA (1996) Hip impact velocities and body configurations for voluntary falls from standing height. J Biomech 29:807–811PubMedCrossRef Van den Kroonenberg AJ, Hayes WC, McMahon TA (1996) Hip impact velocities and body configurations for voluntary falls from standing height. J Biomech 29:807–811PubMedCrossRef
108.
go back to reference Laing AC, Robinovitch SN (2010) Characterizing the effective stiffness of the pelvis during sideways falls on the hip. J Biomech 43:1898–1904PubMedCrossRef Laing AC, Robinovitch SN (2010) Characterizing the effective stiffness of the pelvis during sideways falls on the hip. J Biomech 43:1898–1904PubMedCrossRef
109.
go back to reference Robinovitch SN, McMahon TA, Hayes WC (1995) Force attenuation in trochanteric soft tissues during impact from a fall. J Orthop Res 13:956–962PubMedCrossRef Robinovitch SN, McMahon TA, Hayes WC (1995) Force attenuation in trochanteric soft tissues during impact from a fall. J Orthop Res 13:956–962PubMedCrossRef
110.
go back to reference Van den Kroonenberg AJ, Hayes WC, McMahon TA (1995) Dynamic models for sideways falls from standing height. J Biomech Eng 117:309–318PubMedCrossRef Van den Kroonenberg AJ, Hayes WC, McMahon TA (1995) Dynamic models for sideways falls from standing height. J Biomech Eng 117:309–318PubMedCrossRef
111.
go back to reference Luo Y, Nasiri Sarvi M, Sun P, Ouyang J (2014) Subject specific dynamics model for predicting impact force in elderly lateral fall. Applied Mech Materials 446–447:339–343CrossRef Luo Y, Nasiri Sarvi M, Sun P, Ouyang J (2014) Subject specific dynamics model for predicting impact force in elderly lateral fall. Applied Mech Materials 446–447:339–343CrossRef
112.
go back to reference Luo Y, Nasiri Sarvi M (2015) A subject-specific inverse-dynamics approach for estimating joint stiffness in sideways fall. Int J Experimental Computational Biomech 3:137–160CrossRef Luo Y, Nasiri Sarvi M (2015) A subject-specific inverse-dynamics approach for estimating joint stiffness in sideways fall. Int J Experimental Computational Biomech 3:137–160CrossRef
114.
go back to reference Nasiri Sarvi M, Luo Y, Sun P, Ouyang J (2014) Experimental validation of subject-specific dynamics model for predicting impact force in sideways fall. J Biomed Sci Eng 7:405–418CrossRef Nasiri Sarvi M, Luo Y, Sun P, Ouyang J (2014) Experimental validation of subject-specific dynamics model for predicting impact force in sideways fall. J Biomed Sci Eng 7:405–418CrossRef
115.
go back to reference Yoshikawa T, Turner CH, Peacock M, Slemenda CW, Weaver CM, Teegarden D (1994) P Markwardt, and D.B. Burr. Geometric structure of the femoral neck measured using dual-energy X-ray absorptiometry. J Bone Miner Res 9:1053–64PubMedCrossRef Yoshikawa T, Turner CH, Peacock M, Slemenda CW, Weaver CM, Teegarden D (1994) P Markwardt, and D.B. Burr. Geometric structure of the femoral neck measured using dual-energy X-ray absorptiometry. J Bone Miner Res 9:1053–64PubMedCrossRef
116.
go back to reference Van der Zijden AM, Groen BE, Tanck E, Nienhuis B, Verdonschot N, Weerdesteyn V (2012) Can martial arts techniques reduce fall severity? An in vivo study of femoral loading configurations in sideways falls. J Biomech 45:1650–1655PubMedCrossRef Van der Zijden AM, Groen BE, Tanck E, Nienhuis B, Verdonschot N, Weerdesteyn V (2012) Can martial arts techniques reduce fall severity? An in vivo study of femoral loading configurations in sideways falls. J Biomech 45:1650–1655PubMedCrossRef
117.
go back to reference Dalstra M, Huiskes R, Odgaard A, van Erning L (1993) Mechanical and textural properties of pelvic trabecular bone. J Biomech 26:523–35PubMedCrossRef Dalstra M, Huiskes R, Odgaard A, van Erning L (1993) Mechanical and textural properties of pelvic trabecular bone. J Biomech 26:523–35PubMedCrossRef
118.
go back to reference Kaneko TS, Bell JS, Pejcic MR, Tehranzadeh J, Keyak JH (2004) Mechanical properties, density and quantitative CT scan data of trabecular bone with and without metastases. J Biomech 37:523–30PubMedCrossRef Kaneko TS, Bell JS, Pejcic MR, Tehranzadeh J, Keyak JH (2004) Mechanical properties, density and quantitative CT scan data of trabecular bone with and without metastases. J Biomech 37:523–30PubMedCrossRef
119.
go back to reference McBroom RJ, Hayes WC, Edwards WT, Goldberg RP, White AA 3rd (1985) Prediction of vertebral body compressive fracture using quantitative computed tomography. J Bone Joint Surg Am 67:1206–1214PubMed McBroom RJ, Hayes WC, Edwards WT, Goldberg RP, White AA 3rd (1985) Prediction of vertebral body compressive fracture using quantitative computed tomography. J Bone Joint Surg Am 67:1206–1214PubMed
120.
go back to reference Ciarelli TE, Fyhrie DP, Schaffler MB, Goldstein SA (2000) Variations in three-dimensional cancellous bone architecture of the proximal femur in female hip fractures and in controls. J Bone Miner Res 15:32–40PubMedCrossRef Ciarelli TE, Fyhrie DP, Schaffler MB, Goldstein SA (2000) Variations in three-dimensional cancellous bone architecture of the proximal femur in female hip fractures and in controls. J Bone Miner Res 15:32–40PubMedCrossRef
121.
go back to reference Lotz JC, Gerhart TN, Hayes WC (1990) Mechanical properties of trabecular bone from the proximal femur: a quantitative CT study. J Comput Assist Tomogr 14:107–114PubMedCrossRef Lotz JC, Gerhart TN, Hayes WC (1990) Mechanical properties of trabecular bone from the proximal femur: a quantitative CT study. J Comput Assist Tomogr 14:107–114PubMedCrossRef
122.
go back to reference Lotz JC, Cheal EJ, Hayes WC (1991) Fracture prediction for the proximal femur using finite element models. i. linear analysis. Trans ASME J Biomech Eng 113(4):353–60CrossRef Lotz JC, Cheal EJ, Hayes WC (1991) Fracture prediction for the proximal femur using finite element models. i. linear analysis. Trans ASME J Biomech Eng 113(4):353–60CrossRef
123.
go back to reference Keaveny TM, Borchers RE, Gibson LJ, Hayes WC (1993) Trabecular bone modulus and strength can depend on specimen geometry. J Biomech 26:991–1000PubMedCrossRef Keaveny TM, Borchers RE, Gibson LJ, Hayes WC (1993) Trabecular bone modulus and strength can depend on specimen geometry. J Biomech 26:991–1000PubMedCrossRef
124.
go back to reference Dalstra M, Huiskes R, van Erning L (1995) Development and validation of a three-dimensional finite element model of the pelvic bone. Trans ASME J Biomech Eng 117:272–8CrossRef Dalstra M, Huiskes R, van Erning L (1995) Development and validation of a three-dimensional finite element model of the pelvic bone. Trans ASME J Biomech Eng 117:272–8CrossRef
125.
go back to reference Taddei F, Pancanti A, Viceconti M (2004) An improved method for the automatic mapping of computed tomography numbers onto finite element models. Med Eng Phys 26:61–69PubMedCrossRef Taddei F, Pancanti A, Viceconti M (2004) An improved method for the automatic mapping of computed tomography numbers onto finite element models. Med Eng Phys 26:61–69PubMedCrossRef
126.
go back to reference Taddei F, Martelli S, Reggiani B, Cristofolini L, Viceconti M (2006) Finite-element modeling of bones from CT data: sensitivity to geometry and material uncertainties. IEEE Trans Biomed Eng 53:2194–2200PubMedCrossRef Taddei F, Martelli S, Reggiani B, Cristofolini L, Viceconti M (2006) Finite-element modeling of bones from CT data: sensitivity to geometry and material uncertainties. IEEE Trans Biomed Eng 53:2194–2200PubMedCrossRef
127.
go back to reference Taddei F, Schileo E, Helgason B, Cristofolini L, Viceconti M (2007) The material mapping strategy influences the accuracy of CT-based finite element models of bones: an evaluation against experimental measurements. Med Eng Phys 29:973–979PubMedCrossRef Taddei F, Schileo E, Helgason B, Cristofolini L, Viceconti M (2007) The material mapping strategy influences the accuracy of CT-based finite element models of bones: an evaluation against experimental measurements. Med Eng Phys 29:973–979PubMedCrossRef
128.
go back to reference Keyak JH, Meagher JM, Skinner HB, Mote CD Jr (1990) Automated three-dimensional finite element modelling of bone: a new method. J Biomed Eng 12:389–397PubMedCrossRef Keyak JH, Meagher JM, Skinner HB, Mote CD Jr (1990) Automated three-dimensional finite element modelling of bone: a new method. J Biomed Eng 12:389–397PubMedCrossRef
129.
go back to reference Merz B, Niederer P, Muller R, Ruegsegger P (1996) Automated finite element analysis of excised human femora based on precision-QCT. J Biomech Eng 118:387–390PubMedCrossRef Merz B, Niederer P, Muller R, Ruegsegger P (1996) Automated finite element analysis of excised human femora based on precision-QCT. J Biomech Eng 118:387–390PubMedCrossRef
130.
go back to reference Zannoni C, Mantovani R, Viceconti M (1998) Material properties assignment to finite element models of bone structures: a new method. Med Eng Phys 20:735–740PubMedCrossRef Zannoni C, Mantovani R, Viceconti M (1998) Material properties assignment to finite element models of bone structures: a new method. Med Eng Phys 20:735–740PubMedCrossRef
131.
go back to reference Tizzard A, Horesh L, Yerworth RJ, Holder DS, Bayford RH (2005) Generating accurate finite element meshes for the forward model of the human head in EIT. Physiol Meas 26:S251–S26PubMedCrossRef Tizzard A, Horesh L, Yerworth RJ, Holder DS, Bayford RH (2005) Generating accurate finite element meshes for the forward model of the human head in EIT. Physiol Meas 26:S251–S26PubMedCrossRef
132.
go back to reference Marco V, Fulvia T (2003) Automatic generation of finite element meshes from computed tomography data. Crit Rev Biomed Eng 31:27–72CrossRef Marco V, Fulvia T (2003) Automatic generation of finite element meshes from computed tomography data. Crit Rev Biomed Eng 31:27–72CrossRef
133.
go back to reference Han BH, Ferris R, Blaum C (2014) Exploring ethnic and racial differences in falls among older adults. J Community Health 39:1241–1247PubMedCrossRef Han BH, Ferris R, Blaum C (2014) Exploring ethnic and racial differences in falls among older adults. J Community Health 39:1241–1247PubMedCrossRef
134.
go back to reference Leslie WD, Lentle B (2006) Race/ethnicity and fracture risk assessment: an issue that is more than skin deep. J Clin Densitom 9:406–412PubMedCrossRef Leslie WD, Lentle B (2006) Race/ethnicity and fracture risk assessment: an issue that is more than skin deep. J Clin Densitom 9:406–412PubMedCrossRef
135.
go back to reference Peacock M, Buckwalter KA, Persohn S, Hangartner TN, Econs MJ, Hui S (2009) Race and sex differences in bone mineral density and geometry at the femur. Bone 45:218–225PubMedCentralPubMedCrossRef Peacock M, Buckwalter KA, Persohn S, Hangartner TN, Econs MJ, Hui S (2009) Race and sex differences in bone mineral density and geometry at the femur. Bone 45:218–225PubMedCentralPubMedCrossRef
136.
go back to reference Megyesi MS, Hunt LM, Brody H (2011) A critical review of racial/ethnic variables in osteoporosis and bone density research. Osteoporos Int 22:1669–1679PubMedCrossRef Megyesi MS, Hunt LM, Brody H (2011) A critical review of racial/ethnic variables in osteoporosis and bone density research. Osteoporos Int 22:1669–1679PubMedCrossRef
138.
139.
go back to reference Araujo AB, Travison TG, Harris SS, Holick MF, Turner AK, McKinlay JB (2007) Race/ethnic differences in bone mineral density in men. Osteoporos Int 18:943–53PubMedCrossRef Araujo AB, Travison TG, Harris SS, Holick MF, Turner AK, McKinlay JB (2007) Race/ethnic differences in bone mineral density in men. Osteoporos Int 18:943–53PubMedCrossRef
140.
go back to reference Danielson ME, Beck TJ, Lian Y, Karlamangla AS, Greendale GA, Ruppert K, Lo J, Greenspan S, Vuga M, Cauley JA (2013) Ethnic variability in bone geometry as assessed by hip structure analysis: findings from the hip strength across the menopausal transition study. J Bone Miner Res 28:771–9PubMedCentralPubMedCrossRef Danielson ME, Beck TJ, Lian Y, Karlamangla AS, Greendale GA, Ruppert K, Lo J, Greenspan S, Vuga M, Cauley JA (2013) Ethnic variability in bone geometry as assessed by hip structure analysis: findings from the hip strength across the menopausal transition study. J Bone Miner Res 28:771–9PubMedCentralPubMedCrossRef
141.
go back to reference Osborne DL, Weaver CM, McCabe LD (2012) Body size and pubertal development explain ethnic differences in structural geometry at the femur in Asian, Hispanic, and white early adolescent girls living in the U.S. Bone 51:888–895PubMedCentralPubMedCrossRef Osborne DL, Weaver CM, McCabe LD (2012) Body size and pubertal development explain ethnic differences in structural geometry at the femur in Asian, Hispanic, and white early adolescent girls living in the U.S. Bone 51:888–895PubMedCentralPubMedCrossRef
142.
go back to reference Nelson DA, Pettifor JM, Barondess DA, Cody DD, Uusi-Rasi K, Beck TJ (2004) Comparison of cross-sectional geometry of the proximal femur in white and black women from Detroit and Johannesburg. J Bone Miner Res 19:560–5PubMedCrossRef Nelson DA, Pettifor JM, Barondess DA, Cody DD, Uusi-Rasi K, Beck TJ (2004) Comparison of cross-sectional geometry of the proximal femur in white and black women from Detroit and Johannesburg. J Bone Miner Res 19:560–5PubMedCrossRef
144.
go back to reference Fink HA, Kuskowski MA, Orwoll ES et al (2005) Association between Parkinson’s disease and low bone density and falls in older men: the osteoporotic fractures in men study. J Am Geriatr Soc 53:1559–64PubMedCrossRef Fink HA, Kuskowski MA, Orwoll ES et al (2005) Association between Parkinson’s disease and low bone density and falls in older men: the osteoporotic fractures in men study. J Am Geriatr Soc 53:1559–64PubMedCrossRef
145.
go back to reference Bassiony MM, Rosenblatt A, Baker A et al (2004) Falls and age in patients with Alzheimer’s disease. J Nerv Ment Dis 192:570–572PubMedCrossRef Bassiony MM, Rosenblatt A, Baker A et al (2004) Falls and age in patients with Alzheimer’s disease. J Nerv Ment Dis 192:570–572PubMedCrossRef
147.
go back to reference Steiger P, Cummings SR, Black DM, Spencer NE, Genant HK (1992) Age-related decrements in bone mineral density in women over 65. J Bone Miner Res 7:625–32PubMedCrossRef Steiger P, Cummings SR, Black DM, Spencer NE, Genant HK (1992) Age-related decrements in bone mineral density in women over 65. J Bone Miner Res 7:625–32PubMedCrossRef
148.
go back to reference Hannan MT, Felson DT, Anderson JJ (1992) Bone mineral density in elderly men and women: results from the Framingham osteoporosis study. J Bone Miner Res 7:547–53PubMedCrossRef Hannan MT, Felson DT, Anderson JJ (1992) Bone mineral density in elderly men and women: results from the Framingham osteoporosis study. J Bone Miner Res 7:547–53PubMedCrossRef
149.
go back to reference Burger H, van Daele PL, Algra D, van den Ouweland FA, Grobbee DE, Hofman A, van Kuijk C, Schütte HE, Birkenhäger JC, Pols HA (1994) The association between age and bone mineral density in men and women aged 55 years and over: the Rotterdam study. Bone Miner 25:1–13PubMedCrossRef Burger H, van Daele PL, Algra D, van den Ouweland FA, Grobbee DE, Hofman A, van Kuijk C, Schütte HE, Birkenhäger JC, Pols HA (1994) The association between age and bone mineral density in men and women aged 55 years and over: the Rotterdam study. Bone Miner 25:1–13PubMedCrossRef
150.
go back to reference Kamei T, Aoyagi K, Matsumoto T, Ishida Y, Iwata K, Kumano H, Murakami Y, Kato Y (1999) Age-related bone loss: relationship between age and regional bone mineral density. Tohoku J Exp Med 187:141–7PubMedCrossRef Kamei T, Aoyagi K, Matsumoto T, Ishida Y, Iwata K, Kumano H, Murakami Y, Kato Y (1999) Age-related bone loss: relationship between age and regional bone mineral density. Tohoku J Exp Med 187:141–7PubMedCrossRef
151.
go back to reference Beck TJ, Looker AC, Mourtada F, Daphtary MM, Ruff CB (2006) Age trends in femur stresses from a simulated fall on the hip among men and women: evidence of homeostatic adaptation underlying the decline in hip BMD. J Bone Miner Res 21:1425–32PubMedCrossRef Beck TJ, Looker AC, Mourtada F, Daphtary MM, Ruff CB (2006) Age trends in femur stresses from a simulated fall on the hip among men and women: evidence of homeostatic adaptation underlying the decline in hip BMD. J Bone Miner Res 21:1425–32PubMedCrossRef
152.
go back to reference Beck TJ, Looker AC, Ruff CB, Sievanen H, Wahner HW (2000) Structural trends in the aging femoral neck and proximal shaft: analysis of the third national health and nutrition examination survey dual-energy X-ray absorptiometry data. J Bone Miner Res 15:2297–304PubMedCrossRef Beck TJ, Looker AC, Ruff CB, Sievanen H, Wahner HW (2000) Structural trends in the aging femoral neck and proximal shaft: analysis of the third national health and nutrition examination survey dual-energy X-ray absorptiometry data. J Bone Miner Res 15:2297–304PubMedCrossRef
153.
154.
go back to reference Nieves JW, Formica C, Ruffing J, Zion M, Garrett P, Lindsay R, Cosman F (2005) Males have larger skeletal size and bone mass than females, despite comparable body size. J Bone Miner Res 20:529–535PubMedCrossRef Nieves JW, Formica C, Ruffing J, Zion M, Garrett P, Lindsay R, Cosman F (2005) Males have larger skeletal size and bone mass than females, despite comparable body size. J Bone Miner Res 20:529–535PubMedCrossRef
155.
go back to reference Ettinger B, Pressman A, Sklarin P, Bauer DC, Cauley JA, Cummings SR (1998) Associations between low levels of serum estradiol, bone density, and fractures among elderly women: the study of osteoporotic fractures. J Clin Endocrinol Metab 83:2239–2243PubMed Ettinger B, Pressman A, Sklarin P, Bauer DC, Cauley JA, Cummings SR (1998) Associations between low levels of serum estradiol, bone density, and fractures among elderly women: the study of osteoporotic fractures. J Clin Endocrinol Metab 83:2239–2243PubMed
156.
go back to reference Looker AC, Beck TJ, Orwoll ES (2001) Does body size account for gender differences in femur bone density and geometry? J Bone Miner Res 16:1291–1299PubMedCrossRef Looker AC, Beck TJ, Orwoll ES (2001) Does body size account for gender differences in femur bone density and geometry? J Bone Miner Res 16:1291–1299PubMedCrossRef
157.
go back to reference Faulkner RA, McCulloch RG, Fyke SL, De Coteau WE, McKay HA, Bailey DA, Houston CS, Wilkinson AA (1995) Comparison of areal and estimated volumetric bone mineral density values between older men and women. Osteoporos Int 5:271–5PubMedCrossRef Faulkner RA, McCulloch RG, Fyke SL, De Coteau WE, McKay HA, Bailey DA, Houston CS, Wilkinson AA (1995) Comparison of areal and estimated volumetric bone mineral density values between older men and women. Osteoporos Int 5:271–5PubMedCrossRef
158.
go back to reference Naganathan V, Sambrook P (2003) Gender differences in volumetric bone density: a study of opposite-sex twins. Osteoporos Int 14:564–9PubMedCrossRef Naganathan V, Sambrook P (2003) Gender differences in volumetric bone density: a study of opposite-sex twins. Osteoporos Int 14:564–9PubMedCrossRef
159.
go back to reference Fjeldstad C, Fjeldstad AS, Acree LS, Nickel KJ, Gardner AW (2008) The influence of obesity on falls and quality of life. Dynamic Med 7:1–6CrossRef Fjeldstad C, Fjeldstad AS, Acree LS, Nickel KJ, Gardner AW (2008) The influence of obesity on falls and quality of life. Dynamic Med 7:1–6CrossRef
160.
go back to reference Bruce DG, Devine A, Prince RL (2002) Recreational physical activity in healthy older women: the importance of fear of falling. J Am Geriatr Soc 50:84–9PubMedCrossRef Bruce DG, Devine A, Prince RL (2002) Recreational physical activity in healthy older women: the importance of fear of falling. J Am Geriatr Soc 50:84–9PubMedCrossRef
161.
go back to reference Bouxsein ML, Szulc P, Munoz F, Thrall E, Sornay-Rendu E, Delmas PD (2007) Contribution of trochanteric soft tissues to fall force estimates, the factor of risk, and prediction of Hip fracture risk. J Bone Miner Res 22:825–831PubMedCrossRef Bouxsein ML, Szulc P, Munoz F, Thrall E, Sornay-Rendu E, Delmas PD (2007) Contribution of trochanteric soft tissues to fall force estimates, the factor of risk, and prediction of Hip fracture risk. J Bone Miner Res 22:825–831PubMedCrossRef
162.
go back to reference Majumder S, Roychowdhury A, Pal S (2013) Hip fracture and anthropometric variations: dominance among trochanteric soft tissue thickness, body height and body weight during sideways fall. Clin Biomech 28:1034–1040CrossRef Majumder S, Roychowdhury A, Pal S (2013) Hip fracture and anthropometric variations: dominance among trochanteric soft tissue thickness, body height and body weight during sideways fall. Clin Biomech 28:1034–1040CrossRef
163.
go back to reference Edelstein SL, Barrett-Connor E (1993) Relation between body size and bone mineral density in elderly men and women. Am J Epidemiol 138:160–9PubMed Edelstein SL, Barrett-Connor E (1993) Relation between body size and bone mineral density in elderly men and women. Am J Epidemiol 138:160–9PubMed
164.
go back to reference Oldroyd A, Dubey S (2015) The association between bone mineral density and higher body mass index in men. Int J Clin Pract 69:145–147PubMedCrossRef Oldroyd A, Dubey S (2015) The association between bone mineral density and higher body mass index in men. Int J Clin Pract 69:145–147PubMedCrossRef
165.
go back to reference Morin S, Tsang JF, Leslie WD (2009) Weight and body mass index predict bone mineral density and fractures in women aged 40 to 59 years. Osteoporos Int 20:363–70PubMedCrossRef Morin S, Tsang JF, Leslie WD (2009) Weight and body mass index predict bone mineral density and fractures in women aged 40 to 59 years. Osteoporos Int 20:363–70PubMedCrossRef
166.
go back to reference EL-Bikai R, Tahir MR, Tremblay J, Joffres M, Seda O et al (2015) Association of age-dependent height and bone mineral density decline with increased arterial stiffness and rate of fractures in hypertensive individual. J Hypertens 33:727–735PubMedCrossRef EL-Bikai R, Tahir MR, Tremblay J, Joffres M, Seda O et al (2015) Association of age-dependent height and bone mineral density decline with increased arterial stiffness and rate of fractures in hypertensive individual. J Hypertens 33:727–735PubMedCrossRef
167.
go back to reference Khosla S, Atkinson EJ, Riggs BL, 3rd Melton LJ (1996) Relationship between body composition and bone mass in women. J Bone Miner Res 11:857–63PubMedCrossRef Khosla S, Atkinson EJ, Riggs BL, 3rd Melton LJ (1996) Relationship between body composition and bone mass in women. J Bone Miner Res 11:857–63PubMedCrossRef
168.
go back to reference Kanis JA, Johnell O, De Laet C, Johansson H, Oden A, Delmas P, Eisman J, Fujiwara S, Garnero P, Kroger H, McCloskey EV, Mellstrom D, Melton LJ, Pols H, Reeve J, Silman A, Tenenhouse A (2004) A meta-analysis of previous fracture and subsequent fracture risk. Bone 35:375–82PubMedCrossRef Kanis JA, Johnell O, De Laet C, Johansson H, Oden A, Delmas P, Eisman J, Fujiwara S, Garnero P, Kroger H, McCloskey EV, Mellstrom D, Melton LJ, Pols H, Reeve J, Silman A, Tenenhouse A (2004) A meta-analysis of previous fracture and subsequent fracture risk. Bone 35:375–82PubMedCrossRef
169.
go back to reference Maggi S, Siviero P, Gonnelli S, Caffarelli C, Gandolini G, Cisari C, Rossini M, Iolascon G, Mauro GL, Nuti R, Crepaldi G, Break Study Group (2011) The burden of previous fractures in hip fracture patients. The break study. Aging Clin Exp Res 23:183–6PubMedCrossRef Maggi S, Siviero P, Gonnelli S, Caffarelli C, Gandolini G, Cisari C, Rossini M, Iolascon G, Mauro GL, Nuti R, Crepaldi G, Break Study Group (2011) The burden of previous fractures in hip fracture patients. The break study. Aging Clin Exp Res 23:183–6PubMedCrossRef
170.
go back to reference Center JR, Bliuc D, Nguyen TV, Eisman JA (2007) Risk of subsequent fracture after low-trauma fracture in men and women. JAMA 297:387–394PubMedCrossRef Center JR, Bliuc D, Nguyen TV, Eisman JA (2007) Risk of subsequent fracture after low-trauma fracture in men and women. JAMA 297:387–394PubMedCrossRef
171.
go back to reference Rivadeneira F, Van Meurs JB, Kant J, Zillikens MC, Stolk L, Beck TJ et al (2006) Estrogen receptor beta (ESR2) polymorphisms in interaction with estrogen receptor alpha (ESR1) and insulin-like growth factor I (IGF1) variants influence the risk of fracture in postmenopausal women. J Bone Miner Res 21:1443–1456PubMedCrossRef Rivadeneira F, Van Meurs JB, Kant J, Zillikens MC, Stolk L, Beck TJ et al (2006) Estrogen receptor beta (ESR2) polymorphisms in interaction with estrogen receptor alpha (ESR1) and insulin-like growth factor I (IGF1) variants influence the risk of fracture in postmenopausal women. J Bone Miner Res 21:1443–1456PubMedCrossRef
172.
go back to reference Rivadeneira F, Styrkarsdottir U, Estrada K, Halldorsson BV, Hsu YH, Richards JB et al (2009) Twenty bone-mineral-density loci identified by large-scale meta-analysis of genome-wide association studies. Nat Genet 41:1199–1206PubMedCentralPubMedCrossRef Rivadeneira F, Styrkarsdottir U, Estrada K, Halldorsson BV, Hsu YH, Richards JB et al (2009) Twenty bone-mineral-density loci identified by large-scale meta-analysis of genome-wide association studies. Nat Genet 41:1199–1206PubMedCentralPubMedCrossRef
173.
go back to reference Geusens P, van Geel T, van den Bergh J (2010) Can hip fracture prediction in women be estimated beyond bone mineral density measurement alone? Ther Adv Musculoskel Dis 2:63–77CrossRef Geusens P, van Geel T, van den Bergh J (2010) Can hip fracture prediction in women be estimated beyond bone mineral density measurement alone? Ther Adv Musculoskel Dis 2:63–77CrossRef
174.
go back to reference Brot C, Jensen LB, Sorensen OH (1997) Bone mass and risk factors for bone loss in perimenopausal danish women. J Int Med 242:505–11CrossRef Brot C, Jensen LB, Sorensen OH (1997) Bone mass and risk factors for bone loss in perimenopausal danish women. J Int Med 242:505–11CrossRef
175.
go back to reference Danielson ME, Cauley JA, Baker CE, Newman A, Dorman J, Towers J et al (1999) Familial resemblance of bone mineral density (BMD) and calcaneal ultrasound attenuation: the BMD in mothers and daughters study. J Bone Miner Res 14:102–10PubMedCrossRef Danielson ME, Cauley JA, Baker CE, Newman A, Dorman J, Towers J et al (1999) Familial resemblance of bone mineral density (BMD) and calcaneal ultrasound attenuation: the BMD in mothers and daughters study. J Bone Miner Res 14:102–10PubMedCrossRef
176.
go back to reference Grainge MJ, Coupland CA, Cliffe SJ, Chilvers CE, Hosking DJ (1999) Association between a family history of fractures and bone mineral density in early postmenopausal women. Bone 24:507–12PubMedCrossRef Grainge MJ, Coupland CA, Cliffe SJ, Chilvers CE, Hosking DJ (1999) Association between a family history of fractures and bone mineral density in early postmenopausal women. Bone 24:507–12PubMedCrossRef
177.
go back to reference Seeman E, Tsalamandris C, Formica C, Hopper J, McKay J (1994) Reduced femoral neck bone density in the daughters of women with hip fracture: the role of low peak bone density in the pathogenesis of osteoporosis. J Bone Miner Res 9:739–43PubMedCrossRef Seeman E, Tsalamandris C, Formica C, Hopper J, McKay J (1994) Reduced femoral neck bone density in the daughters of women with hip fracture: the role of low peak bone density in the pathogenesis of osteoporosis. J Bone Miner Res 9:739–43PubMedCrossRef
178.
go back to reference Soroko SB, Barrett-Connor E, Edelstein SL et al (1994) Family history of osteoporosis and bone mineral density at the axial skeleton: the Rancho Bernardo study. J Bone Miner Res 9:761–9PubMedCrossRef Soroko SB, Barrett-Connor E, Edelstein SL et al (1994) Family history of osteoporosis and bone mineral density at the axial skeleton: the Rancho Bernardo study. J Bone Miner Res 9:761–9PubMedCrossRef
179.
go back to reference Kanis JA, Johansson H, Oden A, Johnell O, De Laet C, Eisman JA, McCloskey EV, Mellstrom D, 3rd Melton LJ, Pols HA, Reeve J, Silman AJ, Tenenhouse A (2004) A family history of fracture and fracture risk: a meta-analysis. Bone 35:1029–37PubMedCrossRef Kanis JA, Johansson H, Oden A, Johnell O, De Laet C, Eisman JA, McCloskey EV, Mellstrom D, 3rd Melton LJ, Pols HA, Reeve J, Silman AJ, Tenenhouse A (2004) A family history of fracture and fracture risk: a meta-analysis. Bone 35:1029–37PubMedCrossRef
180.
go back to reference Nelson HD, Nevitt MC, Scott JC, Stone KL, Cummings SR (1994) Smoking, alcohol, and neuromuscular and physical function of older women. Study of osteoporotic fractures research group. JAMA 21:1825–31CrossRef Nelson HD, Nevitt MC, Scott JC, Stone KL, Cummings SR (1994) Smoking, alcohol, and neuromuscular and physical function of older women. Study of osteoporotic fractures research group. JAMA 21:1825–31CrossRef
181.
go back to reference Egger P, Duggleby S, Hobbs R, Fall C, Cooper C (1996) Cigarette smoking and bone mineral density in the elderly. J Epidemiol Community Health 50:47–50PubMedCentralPubMedCrossRef Egger P, Duggleby S, Hobbs R, Fall C, Cooper C (1996) Cigarette smoking and bone mineral density in the elderly. J Epidemiol Community Health 50:47–50PubMedCentralPubMedCrossRef
182.
go back to reference Hollenbach KA, Barrett-Connor E, Edelstein SL, Holbrook T (1993) Cigarette smoking and bone mineral density in older men and women. Am J Public Health 83:1265–1270PubMedCentralPubMedCrossRef Hollenbach KA, Barrett-Connor E, Edelstein SL, Holbrook T (1993) Cigarette smoking and bone mineral density in older men and women. Am J Public Health 83:1265–1270PubMedCentralPubMedCrossRef
183.
go back to reference Hermann AP, Brot C, Gram J, Kolthoff N, Mosekilde L (2015) Premenopausal smoking and bone density in 2015 perimenopausal women. J Bone Miner Res 15:780–787CrossRef Hermann AP, Brot C, Gram J, Kolthoff N, Mosekilde L (2015) Premenopausal smoking and bone density in 2015 perimenopausal women. J Bone Miner Res 15:780–787CrossRef
184.
go back to reference Kanis JA, Johnell O, Oden A, Johansson H, De Laet C et al (2005) Smoking and fracture risk: a meta-analysis. Osteoporos Int 16:155–62PubMedCrossRef Kanis JA, Johnell O, Oden A, Johansson H, De Laet C et al (2005) Smoking and fracture risk: a meta-analysis. Osteoporos Int 16:155–62PubMedCrossRef
185.
go back to reference Saito M, Marumo K (2010) Collagen cross-links as a determinant of bone quality: a possible explanation for bone fragility in aging, osteoporosis, and diabetes mellitus. Osteoporos Int 21:195–214PubMedCrossRef Saito M, Marumo K (2010) Collagen cross-links as a determinant of bone quality: a possible explanation for bone fragility in aging, osteoporosis, and diabetes mellitus. Osteoporos Int 21:195–214PubMedCrossRef
186.
go back to reference De Nijs RN (2008) Glucocorticoid-induced osteoporosis: a review on pathophysiology and treatment options. Minerva Med 99:23–43PubMed De Nijs RN (2008) Glucocorticoid-induced osteoporosis: a review on pathophysiology and treatment options. Minerva Med 99:23–43PubMed
187.
go back to reference Ribeiro D, Zawadynski S, Pittet LF, Chevalley T, Girardin E, Parvex P (2015) Effect of glucocorticoids on growth and bone mineral density in children with nephrotic syndrome. Eur J Pediatr 174:911–917PubMedCrossRef Ribeiro D, Zawadynski S, Pittet LF, Chevalley T, Girardin E, Parvex P (2015) Effect of glucocorticoids on growth and bone mineral density in children with nephrotic syndrome. Eur J Pediatr 174:911–917PubMedCrossRef
188.
go back to reference de Gregório LH, Lacativa PG, Melazzi AC, Russo LA (2006) Glucocorticoid-induced osteoporosis. Arq Bras Endocrinol Metabol 50:793–801PubMedCrossRef de Gregório LH, Lacativa PG, Melazzi AC, Russo LA (2006) Glucocorticoid-induced osteoporosis. Arq Bras Endocrinol Metabol 50:793–801PubMedCrossRef
189.
go back to reference Tsampalieros A, Gupta P, Denburg MR, Shults J, Zemel BS, Mostoufi-Moab S, Wetzsteon RJ, Herskovitz RM, Whitehead KM, Leonard MB (2013) Glucocorticoid effects on changes in bone mineral density and cortical structure in childhood nephrotic syndrome. J Bone Miner Res 28:480–8PubMedCentralPubMedCrossRef Tsampalieros A, Gupta P, Denburg MR, Shults J, Zemel BS, Mostoufi-Moab S, Wetzsteon RJ, Herskovitz RM, Whitehead KM, Leonard MB (2013) Glucocorticoid effects on changes in bone mineral density and cortical structure in childhood nephrotic syndrome. J Bone Miner Res 28:480–8PubMedCentralPubMedCrossRef
191.
go back to reference Stanmore EK, Oldham J, Skelton DA, O’Neill T, Pilling M, Campbell AJ, Todd C. The Lancet, 381:S103. Stanmore EK, Oldham J, Skelton DA, O’Neill T, Pilling M, Campbell AJ, Todd C. The Lancet, 381:S103.
192.
go back to reference Smulders E, Schreven C, Weerdesteyn V, van den Hoogen FHJ, Laan R, Van Lankveld W (2009) Fall incidence and fall risk factors in people with rheumatoid arthritis. Ann Rheum Dis 68:1795–1796PubMedCrossRef Smulders E, Schreven C, Weerdesteyn V, van den Hoogen FHJ, Laan R, Van Lankveld W (2009) Fall incidence and fall risk factors in people with rheumatoid arthritis. Ann Rheum Dis 68:1795–1796PubMedCrossRef
193.
go back to reference Stanmore EK, Oldham J, Skelton DA, O’Neill T, Pilling M, Campbell AJ, Todd C (2013) Risk factors for falls in adults with rheumatoid arthritis: a prospective study. Arthritis Care Res (Hoboken) 65:1251–8CrossRef Stanmore EK, Oldham J, Skelton DA, O’Neill T, Pilling M, Campbell AJ, Todd C (2013) Risk factors for falls in adults with rheumatoid arthritis: a prospective study. Arthritis Care Res (Hoboken) 65:1251–8CrossRef
195.
go back to reference Kaz Kaz H, Johnson D, Kerry S, Chinappen U, Tweed K, Patel S (2004) Fall-related risk factors and osteoporosis in women with rheumatoid arthritis. Rheumatology 43:1267–1271PubMedCrossRef Kaz Kaz H, Johnson D, Kerry S, Chinappen U, Tweed K, Patel S (2004) Fall-related risk factors and osteoporosis in women with rheumatoid arthritis. Rheumatology 43:1267–1271PubMedCrossRef
196.
go back to reference Deodhar AA, Woolf AD (1996) Bone mass measurement and bone metabolism in rheumatoid arthritis: a review. Br J Rheumatol 35:309–22PubMedCrossRef Deodhar AA, Woolf AD (1996) Bone mass measurement and bone metabolism in rheumatoid arthritis: a review. Br J Rheumatol 35:309–22PubMedCrossRef
197.
go back to reference Lodder M, de Jong Z, Kostense P et al (2004) Bone mineral density in patients with rheumatoid arthritis: relation between disease severity and low bone mineral density. Ann Rheum Dis 63:1576–1580PubMedCentralPubMedCrossRef Lodder M, de Jong Z, Kostense P et al (2004) Bone mineral density in patients with rheumatoid arthritis: relation between disease severity and low bone mineral density. Ann Rheum Dis 63:1576–1580PubMedCentralPubMedCrossRef
198.
go back to reference Als OS, Gotfredsen A, Christiansen C (1985) The effect of glucocorticoids on bone mass in rheumatoid arthritis patients. Influence Menopausal State Arthritis Rheumatism 28:369–375PubMedCrossRef Als OS, Gotfredsen A, Christiansen C (1985) The effect of glucocorticoids on bone mass in rheumatoid arthritis patients. Influence Menopausal State Arthritis Rheumatism 28:369–375PubMedCrossRef
199.
go back to reference Goldring S, Gravallese E (2004) Adverse effects of rheumatoid arthritis on bone remodeling. Arthritis Res Therapy 6(Suppl 3):38CrossRef Goldring S, Gravallese E (2004) Adverse effects of rheumatoid arthritis on bone remodeling. Arthritis Res Therapy 6(Suppl 3):38CrossRef
200.
go back to reference Walsh NC, Gravallese EM (2010) Bone remodeling in rheumatic disease: a question of balance. Immunol Rev 233:301–12PubMedCrossRef Walsh NC, Gravallese EM (2010) Bone remodeling in rheumatic disease: a question of balance. Immunol Rev 233:301–12PubMedCrossRef
201.
go back to reference Hingson R, Howland J (1987) Alcohol as a risk factor for injury or death resulting from accidental falls: a review of the literature. J Stud Alcohol 48:212–219PubMedCrossRef Hingson R, Howland J (1987) Alcohol as a risk factor for injury or death resulting from accidental falls: a review of the literature. J Stud Alcohol 48:212–219PubMedCrossRef
202.
go back to reference Mukamal KJ, Mittleman MA, Longstreth WT, Newman AB, Fried LP, Siscovick DS (2004) Self-reported alcohol consumption and falls in older adults: cross-sectional and longitudinal analyses of the cardiovascular health study. J Am Geriatr Soc 52:1174–9PubMedCrossRef Mukamal KJ, Mittleman MA, Longstreth WT, Newman AB, Fried LP, Siscovick DS (2004) Self-reported alcohol consumption and falls in older adults: cross-sectional and longitudinal analyses of the cardiovascular health study. J Am Geriatr Soc 52:1174–9PubMedCrossRef
203.
go back to reference Kool B, Ameratunga S, Jackson R (2009) The role of alcohol in unintentional falls among young and middle-aged adults: a systematic review of epidemiological studies. Inj Prev 15:341–7PubMedCrossRef Kool B, Ameratunga S, Jackson R (2009) The role of alcohol in unintentional falls among young and middle-aged adults: a systematic review of epidemiological studies. Inj Prev 15:341–7PubMedCrossRef
204.
go back to reference Ganry O, Baudoin C, Fardellone P (2000) Effect of alcohol intake on bone mineral density in elderly women: The EPIDOS study. Epidémiologie de l’Ostéoporose. Am J Epidemiol 151:773–80PubMedCrossRef Ganry O, Baudoin C, Fardellone P (2000) Effect of alcohol intake on bone mineral density in elderly women: The EPIDOS study. Epidémiologie de l’Ostéoporose. Am J Epidemiol 151:773–80PubMedCrossRef
205.
go back to reference McLernon DJ, Powell JJ, Jugdaohsingh R, Macdonald HM (2012) Do lifestyle choices explain the effect of alcohol on bone mineral density in women around menopause? Am J Clin Nutr 95:1261–9PubMedCrossRef McLernon DJ, Powell JJ, Jugdaohsingh R, Macdonald HM (2012) Do lifestyle choices explain the effect of alcohol on bone mineral density in women around menopause? Am J Clin Nutr 95:1261–9PubMedCrossRef
206.
go back to reference Berg KM, Kunins HV, Jackson JL et al (2008) Association between alcohol consumption and both osteoporotic fracture and bone density. Am J Med 121:406–418PubMedCentralPubMedCrossRef Berg KM, Kunins HV, Jackson JL et al (2008) Association between alcohol consumption and both osteoporotic fracture and bone density. Am J Med 121:406–418PubMedCentralPubMedCrossRef
207.
go back to reference Sampson HW (1998) Alcohol’s harmful effects on bone. Alcohol Health Res World 22:190–194PubMed Sampson HW (1998) Alcohol’s harmful effects on bone. Alcohol Health Res World 22:190–194PubMed
208.
go back to reference Kim MJ, Shim MS, Kim MK, Lee Y, Shin YG, Chung CH, Kwon SO (2003) Effect of chronic alcohol ingestion on bone mineral density in males without liver cirrhosis. Korean J Intern Med 18:174–80PubMedCentralPubMedCrossRef Kim MJ, Shim MS, Kim MK, Lee Y, Shin YG, Chung CH, Kwon SO (2003) Effect of chronic alcohol ingestion on bone mineral density in males without liver cirrhosis. Korean J Intern Med 18:174–80PubMedCentralPubMedCrossRef
209.
go back to reference Kaptoge S, Beck TJ, Reeve J et al (2008) Prediction of incident hip fracture risk by femur geometry variables measured by hip structural analysis in the study of osteoporotic fractures. J Bone Miner Res 23:1892–904PubMedCentralPubMedCrossRef Kaptoge S, Beck TJ, Reeve J et al (2008) Prediction of incident hip fracture risk by femur geometry variables measured by hip structural analysis in the study of osteoporotic fractures. J Bone Miner Res 23:1892–904PubMedCentralPubMedCrossRef
210.
go back to reference Leslie WD, Pahlavan PS et al (2009) Prediction of hip and other osteoporotic fractures from hip geometry in a large clinical cohort. Osteoporos Int 20:1767–74PubMedCrossRef Leslie WD, Pahlavan PS et al (2009) Prediction of hip and other osteoporotic fractures from hip geometry in a large clinical cohort. Osteoporos Int 20:1767–74PubMedCrossRef
211.
212.
go back to reference Marshall D, Johnell O, Wedel H (1996) Meta-analysis of how well measures of bone mineral density predict occurrence of osteoporotic fractures. BMJ 312:1254–9PubMedCentralPubMedCrossRef Marshall D, Johnell O, Wedel H (1996) Meta-analysis of how well measures of bone mineral density predict occurrence of osteoporotic fractures. BMJ 312:1254–9PubMedCentralPubMedCrossRef
213.
go back to reference Stone KL, Seeley DG, Lui LY et al (2003) BMD at multiple sites and risk of fracture of multiple types: long-term results from the study of osteoporotic fractures. J Bone Miner Res 18:1947–54PubMedCrossRef Stone KL, Seeley DG, Lui LY et al (2003) BMD at multiple sites and risk of fracture of multiple types: long-term results from the study of osteoporotic fractures. J Bone Miner Res 18:1947–54PubMedCrossRef
214.
go back to reference Conley D, Schultz AA, Selvin R (1999) The challenge of predicting patients at risk for falling: development of the conley scale. Medsurg Nurs 8:348–54PubMed Conley D, Schultz AA, Selvin R (1999) The challenge of predicting patients at risk for falling: development of the conley scale. Medsurg Nurs 8:348–54PubMed
215.
go back to reference Bouxsein ML (2006) Biomechanics of osteoporotic fractures. Clin Rev Bone Mineral Metabolism 4:143–154CrossRef Bouxsein ML (2006) Biomechanics of osteoporotic fractures. Clin Rev Bone Mineral Metabolism 4:143–154CrossRef
216.
go back to reference Bessho M, Ohnishi I, Matsumoto T, Ohashi S, Matsuyama J, Tobita K, Kaneko M, Nakamura K (2009) Prediction of proximal femur strength using a CT-based nonlinear finite element method: differences in predicted fracture load and site with changing load and boundary conditions. Bone 45:226–231PubMedCrossRef Bessho M, Ohnishi I, Matsumoto T, Ohashi S, Matsuyama J, Tobita K, Kaneko M, Nakamura K (2009) Prediction of proximal femur strength using a CT-based nonlinear finite element method: differences in predicted fracture load and site with changing load and boundary conditions. Bone 45:226–231PubMedCrossRef
217.
go back to reference MacNeil JA, Boyd SK (2008) Bone strength at the distal radius can be estimated from high resolution peripheral quantitative computed tomography and the finite element method. Bone 42:1203–1213PubMedCrossRef MacNeil JA, Boyd SK (2008) Bone strength at the distal radius can be estimated from high resolution peripheral quantitative computed tomography and the finite element method. Bone 42:1203–1213PubMedCrossRef
218.
go back to reference Le Bras A, Kolta S, Soubrane P, Skalli W, Roux C, Mitton D (2006) Assessment of femoral neck strength by 3-dimensional x-ray absorptiometry. J Clin Densitom 9:425–30PubMedCrossRef Le Bras A, Kolta S, Soubrane P, Skalli W, Roux C, Mitton D (2006) Assessment of femoral neck strength by 3-dimensional x-ray absorptiometry. J Clin Densitom 9:425–30PubMedCrossRef
219.
go back to reference Nishiyama KK, Gilchrist S, Guy P, Cripton P, Boyd SK (2013) Proximal femur bone strength estimated by a computationally fast finite element analysis in a sideways fall configuration. J Biomech 46:1231–1236PubMedCrossRef Nishiyama KK, Gilchrist S, Guy P, Cripton P, Boyd SK (2013) Proximal femur bone strength estimated by a computationally fast finite element analysis in a sideways fall configuration. J Biomech 46:1231–1236PubMedCrossRef
220.
go back to reference Keyak JH, Kaneko TS et al (2005) Predicting proximal femoral strength using structural engineering models. Clin Orthop Relat Res 437:219–228PubMedCrossRef Keyak JH, Kaneko TS et al (2005) Predicting proximal femoral strength using structural engineering models. Clin Orthop Relat Res 437:219–228PubMedCrossRef
221.
go back to reference Bessho M, Ohnishi I et al (2007) Prediction of strength and strain of the proximal femur by a CT-based finite element method. J Biomech 40:1745–1753PubMedCrossRef Bessho M, Ohnishi I et al (2007) Prediction of strength and strain of the proximal femur by a CT-based finite element method. J Biomech 40:1745–1753PubMedCrossRef
222.
go back to reference Mirzaei M, Zeinali A, Razmjoo A, Nazemi M (2009) On prediction of the strength levels and failure patterns of human vertebrae using quantitative computed tomography (QCT)-based finite element method. J Biomech 42:1584–1591PubMedCrossRef Mirzaei M, Zeinali A, Razmjoo A, Nazemi M (2009) On prediction of the strength levels and failure patterns of human vertebrae using quantitative computed tomography (QCT)-based finite element method. J Biomech 42:1584–1591PubMedCrossRef
223.
go back to reference Matsumoto T, Ohnishi I, Bessho M, Imai K, Ohashi S, Nakamura K (2009) Prediction of vertebral strength under loading conditions occurring in activities of daily living using a computed tomography-based nonlinear finite element method. Spine (Phila Pa 1976) 34:1464–9CrossRef Matsumoto T, Ohnishi I, Bessho M, Imai K, Ohashi S, Nakamura K (2009) Prediction of vertebral strength under loading conditions occurring in activities of daily living using a computed tomography-based nonlinear finite element method. Spine (Phila Pa 1976) 34:1464–9CrossRef
224.
go back to reference Cody DD, Gross GJ, Hou FJ et al (1999) Femoral strength is better predicted by finite element models than QCT and DXA. J Biomech 32:1013–1020PubMedCrossRef Cody DD, Gross GJ, Hou FJ et al (1999) Femoral strength is better predicted by finite element models than QCT and DXA. J Biomech 32:1013–1020PubMedCrossRef
225.
go back to reference Dall’Ara E, Pahr D, Varga P, Kainberger F, Zysset P (2012) QCT-based finite element models predict human vertebral strength in vitro significantly better than simulated DEXA. Osteoporos Int 23:563–572PubMedCrossRef Dall’Ara E, Pahr D, Varga P, Kainberger F, Zysset P (2012) QCT-based finite element models predict human vertebral strength in vitro significantly better than simulated DEXA. Osteoporos Int 23:563–572PubMedCrossRef
226.
go back to reference Engelke K, Libanati C, Fuerst T, Zysset P, Genant HK (2013) Advanced CT based in vivo methods for the assessment of bone density, structure, and strength. Curr Osteoporos Rep:246–255 Engelke K, Libanati C, Fuerst T, Zysset P, Genant HK (2013) Advanced CT based in vivo methods for the assessment of bone density, structure, and strength. Curr Osteoporos Rep:246–255
227.
go back to reference Carpenter RD (2013) Finite element analysis of the hip and spine based on quantitative computed tomography. Curr Osteoporos Rep, pages 156–62 Carpenter RD (2013) Finite element analysis of the hip and spine based on quantitative computed tomography. Curr Osteoporos Rep, pages 156–62
229.
go back to reference Dall’Ara E, Luisier B, Schmidt R, Kainberger F, Zysset P, Pahr D (2013) A nonlinear QCT-based finite element model validation study for the human femur tested in two configurations in vitro. Bone 52:27–38PubMedCrossRef Dall’Ara E, Luisier B, Schmidt R, Kainberger F, Zysset P, Pahr D (2013) A nonlinear QCT-based finite element model validation study for the human femur tested in two configurations in vitro. Bone 52:27–38PubMedCrossRef
230.
go back to reference Yang L, Peel N, Clowes JA, McCloskey EV, Eastell R (2009) Use of DXA-based structural engineering models of the proximal femur to discriminate hip fracture. J Bone Miner Res 24:33–42PubMedCentralPubMedCrossRef Yang L, Peel N, Clowes JA, McCloskey EV, Eastell R (2009) Use of DXA-based structural engineering models of the proximal femur to discriminate hip fracture. J Bone Miner Res 24:33–42PubMedCentralPubMedCrossRef
231.
go back to reference Yang L, Palermo L, Black DM, Eastell R (2014) Prediction of incident hip fracture with the estimated femoral strength by finite element analysis of DXA scans in the study of osteoporotic fractures. 29:2594–2600 Yang L, Palermo L, Black DM, Eastell R (2014) Prediction of incident hip fracture with the estimated femoral strength by finite element analysis of DXA scans in the study of osteoporotic fractures. 29:2594–2600
234.
go back to reference Long Y, Leslie W, Luo Y (2015) Study of DXA-derived lateral-medial cortical bone thickness in assessing hip fracture risk. Bone Reports 2:44–51CrossRef Long Y, Leslie W, Luo Y (2015) Study of DXA-derived lateral-medial cortical bone thickness in assessing hip fracture risk. Bone Reports 2:44–51CrossRef
Metadata
Title
A biomechanical sorting of clinical risk factors affecting osteoporotic hip fracture
Author
Y. Luo
Publication date
01-02-2016
Publisher
Springer London
Published in
Osteoporosis International / Issue 2/2016
Print ISSN: 0937-941X
Electronic ISSN: 1433-2965
DOI
https://doi.org/10.1007/s00198-015-3316-6

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