Skip to main content
Top
Published in: Osteoporosis International 1/2015

01-01-2015 | Original Article

Women with severe obesity and relatively low bone mineral density have increased fracture risk

Authors: S. Cawsey, R. Padwal, A. M. Sharma, X. Wang, S. Li, K. Siminoski

Published in: Osteoporosis International | Issue 1/2015

Login to get access

Abstract

Summary

Among women with obesity, those with the lowest bone density have the highest fracture risk. The types of fractures include any fracture, fragility-type fractures (vertebra, hip, upper arm, forearm, and lower leg), hand and foot fractures, osteoporotic, and other fracture types.

Introduction

Recent reports have contradicted the traditional view that obesity is protective against fracture. In this study, we have evaluated the relationship between fracture history and bone mineral density (BMD) in subjects with obesity.

Methods

Fracture risk was assessed in 400 obese women in relation to body mass index (BMI), BMD, and clinical and laboratory variables.

Results

Subjects (mean age, 43.8 years; SD, 11.1 years) had a mean BMI of 46.0 kg/m2 (SD, 7.4 kg/m2). There were a total of 178 self-reported fractures in 87 individuals (21.8 % of subjects); fragility-type fractures (hip, vertebra, proximal humerus, distal forearm, and ankle/lower leg) were present in 58 (14.5 %). There were higher proportions of women in the lowest femoral neck BMD quintile who had any fracture history (41.3 vs. 17.2 %, p < 0.0001), any fragility-type fractures (26.7 vs. 11.7 %, p = 0.0009), hand and foot fractures (16.0 vs. 5.5 %, p = 0.002), other fracture types (5.3 vs. 1.2 %, p = 0.02), and osteoporotic fractures (8.0 vs. 1.2 %, p < 0.0001) compared to the remaining population. The odds ratio for any fracture was 0.63 (95 % CI, 0.49–0.89; p = 0.0003) per SD increase in BMD and was 4.3 (95 % CI, 1.9–9.4; p = 0.003) in the lowest BMD quintile compared to the highest quintile. No clinical or biochemical predictors of fracture risk were identified apart from BMD.

Conclusions

Women with obesity who have the lowest BMD values, despite these being almost normal, have an elevated risk of fracture compared to those with higher BMD.
Literature
1.
go back to reference De Laet C, Kanis JA, Oden A, Johanson H, Johnell O, Delmas P, Eisman JA, Kroger H, Fujiwara S, Garnero P, McCloskey EV, Mellstrom D, Melton LJ, Meunier PJ, Pols HA, Reeve J, Silman A, Tenenhouse A (2005) Body mass index as a predictor of fracture risk: a meta-analysis. Osteoporos Int 16:1330–1338PubMedCrossRef De Laet C, Kanis JA, Oden A, Johanson H, Johnell O, Delmas P, Eisman JA, Kroger H, Fujiwara S, Garnero P, McCloskey EV, Mellstrom D, Melton LJ, Meunier PJ, Pols HA, Reeve J, Silman A, Tenenhouse A (2005) Body mass index as a predictor of fracture risk: a meta-analysis. Osteoporos Int 16:1330–1338PubMedCrossRef
2.
go back to reference Prieto-Alhambra D, Premaor MO, Fina Aviles F, Hermosilla E, Martinez-Laguna D, Carbonell-Abella C, Nogues X, Compston JE, Diez-Perez A (2012) The association between fracture and obesity is site-dependent: a population-based study in postmenopausal women. J Bone Miner Res 27:294–300PubMedCrossRef Prieto-Alhambra D, Premaor MO, Fina Aviles F, Hermosilla E, Martinez-Laguna D, Carbonell-Abella C, Nogues X, Compston JE, Diez-Perez A (2012) The association between fracture and obesity is site-dependent: a population-based study in postmenopausal women. J Bone Miner Res 27:294–300PubMedCrossRef
3.
go back to reference Gnudi S, Sitta E, Lisi L (2009) Relationship of body mass index with main limb fragility fractures in postmenopausal women. J Bone Miner Metab 27:479–484PubMedCrossRef Gnudi S, Sitta E, Lisi L (2009) Relationship of body mass index with main limb fragility fractures in postmenopausal women. J Bone Miner Metab 27:479–484PubMedCrossRef
4.
go back to reference Compston JE, Watts NB, Chapurlat R, Cooper C, Boonen S, Greenspan S, Pfeilschifter J, Silverman S, Diez-Perez 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, Investigators G (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, Diez-Perez 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, Investigators G (2011) Obesity is not protective against fracture in postmenopausal women: GLOW. Am J Med 124:1043–1050PubMedCrossRef
5.
go back to reference Bergkvist D, Hekmat K, Svensson T, Dahlberg L (2009) Obesity in orthopedic patients. Surg Obes Relat Dis 5:670–672PubMedCrossRef Bergkvist D, Hekmat K, Svensson T, Dahlberg L (2009) Obesity in orthopedic patients. Surg Obes Relat Dis 5:670–672PubMedCrossRef
6.
go back to reference Premaor MO, Ensrud K, Lui L, Parker RA, Cauley J, Hillier TA, Cummings S, Compston JE, for the Study of Osteoporotic Fractures (2011) Risk factors for nonvertebral fracture in obese older women. J Clin Endocrinol Metab 96:2414–2421PubMedCentralPubMedCrossRef Premaor MO, Ensrud K, Lui L, Parker RA, Cauley J, Hillier TA, Cummings S, Compston JE, for the Study of Osteoporotic Fractures (2011) Risk factors for nonvertebral fracture in obese older women. J Clin Endocrinol Metab 96:2414–2421PubMedCentralPubMedCrossRef
7.
go back to reference FitzGerald G, Boonen S, Compston JE, Pfeilschifter J, LaCroix AZ, Hosmer DW Jr, Hooven FH, Gehlbach SH, Investigators GLOW (2012) Differing risk profiles for individual fracture sites: evidence from the global longitudinal study of osteoporosis in women (GLOW). J Bone Miner Res 27:1907–1915PubMedCrossRef FitzGerald G, Boonen S, Compston JE, Pfeilschifter J, LaCroix AZ, Hosmer DW Jr, Hooven FH, Gehlbach SH, Investigators GLOW (2012) Differing risk profiles for individual fracture sites: evidence from the global longitudinal study of osteoporosis in women (GLOW). J Bone Miner Res 27:1907–1915PubMedCrossRef
8.
go back to reference King CM, Hamilton GA, Cobb M, Carpenter D, Ford LA (2012) Association between ankle fractures and obesity. J Foot Ankle Surg 51:543–547PubMedCrossRef King CM, Hamilton GA, Cobb M, Carpenter D, Ford LA (2012) Association between ankle fractures and obesity. J Foot Ankle Surg 51:543–547PubMedCrossRef
9.
go back to reference Johansson H, Kanis JA, Oden A et al (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, Oden A et al (2014) A meta-analysis of the association of fracture risk and body mass index in women. J Bone Miner Res 29:223–233PubMedCrossRef
10.
go back to reference Holmberg AH, Johnell O, Nilsson PM, Nilsson J, Berglund G, Akesson K (2006) Risk factors for fragility fracture in middle age. A prospective population-based study of 33,000 men and women. Osteoporos Int 17:1065–1077PubMedCrossRef Holmberg AH, Johnell O, Nilsson PM, Nilsson J, Berglund G, Akesson K (2006) Risk factors for fragility fracture in middle age. A prospective population-based study of 33,000 men and women. Osteoporos Int 17:1065–1077PubMedCrossRef
11.
go back to reference Baim S, Binkley N, Bilezikian JP, Kendler DL, Hans DB, Lewiecki M, Silverman S (2008) Official positions of the international society for clinical densitometry and executive summary of the 2007 ISCD position development conference. J Clin Densitom 11:6–21PubMedCrossRef Baim S, Binkley N, Bilezikian JP, Kendler DL, Hans DB, Lewiecki M, Silverman S (2008) Official positions of the international society for clinical densitometry and executive summary of the 2007 ISCD position development conference. J Clin Densitom 11:6–21PubMedCrossRef
12.
go back to reference World Health Organization (1995) Physical status: the use and interpretation of anthropometry. Report of a WHO expert committee. World Health Organization Tech Rep Ser 854:1–452 World Health Organization (1995) Physical status: the use and interpretation of anthropometry. Report of a WHO expert committee. World Health Organization Tech Rep Ser 854:1–452
13.
go back to reference Matthews DR, Hosker JP, Rudenski AS, Naylor BA, Treacher DF, Turner RC (1985) Homeostasis model assessment: insulin resistance and beta-cell function from fasting plasma glucose and insulin concentrations in man. Diabetologia 28:412–419PubMedCrossRef Matthews DR, Hosker JP, Rudenski AS, Naylor BA, Treacher DF, Turner RC (1985) Homeostasis model assessment: insulin resistance and beta-cell function from fasting plasma glucose and insulin concentrations in man. Diabetologia 28:412–419PubMedCrossRef
14.
go back to reference Leslie WD, Lix LM, Langsetmo L, Berger C, Goltzman D, Hanley DA, Adachi JD, Johansson H, Oden A, McCloskey E, Kanis JA (2011) Construction of a FRAX(R) model for the assessment of fracture probability in Canada and implications for treatment. Osteoporos Int 22:817–827PubMedCrossRef Leslie WD, Lix LM, Langsetmo L, Berger C, Goltzman D, Hanley DA, Adachi JD, Johansson H, Oden A, McCloskey E, Kanis JA (2011) Construction of a FRAX(R) model for the assessment of fracture probability in Canada and implications for treatment. Osteoporos Int 22:817–827PubMedCrossRef
15.
go back to reference Padwal RS, Rueda-Clausen CF, Sharma AM, Agborsangaya CB, Klarenbach S, Birch DW, Karmali S, McCargar L, Majumdar SR (2013) Weight loss and outcomes in wait-listed, medically managed, and surgically treated patients enrolled in a population-based bariatric program: prospective cohort study. Med Care 52(3):208–15CrossRef Padwal RS, Rueda-Clausen CF, Sharma AM, Agborsangaya CB, Klarenbach S, Birch DW, Karmali S, McCargar L, Majumdar SR (2013) Weight loss and outcomes in wait-listed, medically managed, and surgically treated patients enrolled in a population-based bariatric program: prospective cohort study. Med Care 52(3):208–15CrossRef
16.
go back to reference Hosmer WD, Genant HK, Browner WS (2002) Fractures before menopause: a red flag for physicians. Osteoporos Int 13:337–341PubMedCrossRef Hosmer WD, Genant HK, Browner WS (2002) Fractures before menopause: a red flag for physicians. Osteoporos Int 13:337–341PubMedCrossRef
17.
go back to reference Cummings SR, Black D (1995) Bone mass measurements and risk of fracture in Caucasian women: a review of findings from prospective studies. Am J Med 98(Sippl 2A):24S–27SPubMedCrossRef Cummings SR, Black D (1995) Bone mass measurements and risk of fracture in Caucasian women: a review of findings from prospective studies. Am J Med 98(Sippl 2A):24S–27SPubMedCrossRef
18.
go back to reference Ross PD, Genant HK, Davis JW, Miller PD, Wasnich RD (1993) Predicting vertebral fracture incidence from prevalent fractures and bone density among non-Black, osteoporotic women. Osteoporos Int 3:120–126PubMedCrossRef Ross PD, Genant HK, Davis JW, Miller PD, Wasnich RD (1993) Predicting vertebral fracture incidence from prevalent fractures and bone density among non-Black, osteoporotic women. Osteoporos Int 3:120–126PubMedCrossRef
19.
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 18:1254–1259CrossRef Marshall D, Johnell O, Wedel H (1996) Meta-analysis of how well measures of bone mineral density predict occurrence of osteoporotic fractures. BMJ 18:1254–1259CrossRef
20.
go back to reference Chen P, Krege JH, Adachi JD, Prior JC, Tenenhouse A, Brown JP, Papadimitropoulos E, Kreiger N, Olszynski WP, Josse RG, Goltzman D, CaMOS Research Group (2009) J Bone Miner Res 24:495–502PubMedCrossRef Chen P, Krege JH, Adachi JD, Prior JC, Tenenhouse A, Brown JP, Papadimitropoulos E, Kreiger N, Olszynski WP, Josse RG, Goltzman D, CaMOS Research Group (2009) J Bone Miner Res 24:495–502PubMedCrossRef
21.
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 35:375–382PubMedCrossRef 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 35:375–382PubMedCrossRef
23.
go back to reference Chaudhry S, Egol KA (2011) Ankle injuries and fractures in the obese patient. Orthop Clin N Am 42:45–53CrossRef Chaudhry S, Egol KA (2011) Ankle injuries and fractures in the obese patient. Orthop Clin N Am 42:45–53CrossRef
24.
go back to reference Haraguchi N, Armiger RS (2009) A new interpretation of the mechanism of ankle fracture. J Bone Joint Surg Am 91:821–829PubMedCrossRef Haraguchi N, Armiger RS (2009) A new interpretation of the mechanism of ankle fracture. J Bone Joint Surg Am 91:821–829PubMedCrossRef
25.
go back to reference Pirro M, Fabbriciani G, Leli C, Callarelli L, Manfredelli MR, Fioroni C, Mannarino MR, Scarponi AM, Mannarino E (2010) High weight or body mass index increase the risk of vertebral fractures in postmenopausal osteoporotic women. J Bone Miner Metab 28:88–93PubMedCrossRef Pirro M, Fabbriciani G, Leli C, Callarelli L, Manfredelli MR, Fioroni C, Mannarino MR, Scarponi AM, Mannarino E (2010) High weight or body mass index increase the risk of vertebral fractures in postmenopausal osteoporotic women. J Bone Miner Metab 28:88–93PubMedCrossRef
26.
go back to reference Lee KM, Chung CY, Kwon SS, Won SH, Lee SY, Chung MK, Park MS (2013) Ankle fractures have features of an osteoporotic fracture. Osteoporos Int 24(11):2819–2825PubMedCrossRef Lee KM, Chung CY, Kwon SS, Won SH, Lee SY, Chung MK, Park MS (2013) Ankle fractures have features of an osteoporotic fracture. Osteoporos Int 24(11):2819–2825PubMedCrossRef
27.
go back to reference Mattila VM, Jormanainen V, Sahi T, Pihlajamaki H (2007) An association between socioeconomic, health and health behavioural indicators and fractures in young adult males. Osteoporos Int 18:1609–1615PubMedCrossRef Mattila VM, Jormanainen V, Sahi T, Pihlajamaki H (2007) An association between socioeconomic, health and health behavioural indicators and fractures in young adult males. Osteoporos Int 18:1609–1615PubMedCrossRef
29.
30.
go back to reference Davison KS, Siminoski K, Adachi JD, Hanley DA, Goltzman D, Hodsman AB, Josse R, Kaiser S, Olszynski WP, Papaioannou A, Ste-Marie LG, Kendler DL, Tenenhouse A, Brown JP (2006) Bone strength: the whole is greater than the sum of its parts. Semin Arthritis Rheum 36:22–31PubMedCrossRef Davison KS, Siminoski K, Adachi JD, Hanley DA, Goltzman D, Hodsman AB, Josse R, Kaiser S, Olszynski WP, Papaioannou A, Ste-Marie LG, Kendler DL, Tenenhouse A, Brown JP (2006) Bone strength: the whole is greater than the sum of its parts. Semin Arthritis Rheum 36:22–31PubMedCrossRef
32.
33.
go back to reference Richards JB, Rivadeneira F, Inouye M, Pastinen TM, Soranzo SG, Andrew T, Falchi M, Gwilliam R, Ahmadi KR, Valdes AM, Arp P, Whittaker P, Verlaan DJ, Jhamai M, Kumanduri V, Moorhouse M, van Meurs JB, Hofman A, Pols HAP, Hart D, Zhai G, Kato BS, Mullin BH, Zhang F, Deloukas P, Uitterlinden AG, Spector TD (2008) Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study. Lancet 371:1505–1512PubMedCentralPubMedCrossRef Richards JB, Rivadeneira F, Inouye M, Pastinen TM, Soranzo SG, Andrew T, Falchi M, Gwilliam R, Ahmadi KR, Valdes AM, Arp P, Whittaker P, Verlaan DJ, Jhamai M, Kumanduri V, Moorhouse M, van Meurs JB, Hofman A, Pols HAP, Hart D, Zhai G, Kato BS, Mullin BH, Zhang F, Deloukas P, Uitterlinden AG, Spector TD (2008) Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study. Lancet 371:1505–1512PubMedCentralPubMedCrossRef
34.
go back to reference Barrett-Connor E, Kritz-Silverstein D (1996) Does hyperinsulinemia preserve bone? Diabetes Care 19:1388–1392PubMedCrossRef Barrett-Connor E, Kritz-Silverstein D (1996) Does hyperinsulinemia preserve bone? Diabetes Care 19:1388–1392PubMedCrossRef
36.
go back to reference Rosen CJ, Bouxsein ML (2006) Mechanisms of disease: is osteoporosis the obesity of bone? Nat Clin Pract Rheumatol 2:35–43PubMedCrossRef Rosen CJ, Bouxsein ML (2006) Mechanisms of disease: is osteoporosis the obesity of bone? Nat Clin Pract Rheumatol 2:35–43PubMedCrossRef
37.
go back to reference Crepaldi G, Romanato G, Tonin P, Maggi S (2007) Osteoporosis and body composition. J Endocrinol Investig 30:S42–S47 Crepaldi G, Romanato G, Tonin P, Maggi S (2007) Osteoporosis and body composition. J Endocrinol Investig 30:S42–S47
39.
go back to reference Turner CH, Pavalko FM (1998) Mechanotransduction and functional response of the skeleton to physical stress: the mechanisms and mechanics of bone adaptation. J Orthop Sci 3:346–355PubMedCrossRef Turner CH, Pavalko FM (1998) Mechanotransduction and functional response of the skeleton to physical stress: the mechanisms and mechanics of bone adaptation. J Orthop Sci 3:346–355PubMedCrossRef
40.
go back to reference Hsu YH, Venners SA, Terwedow HA, Feng Y, Niu T, Li Z, Laird N, Brain JD, Cummings SR, Bouxsein ML, Rosen CJ, Xu X (2006) Relation of body composition, fat mass, and serum lipids to osteoporotic fractures and bone mineral density in Chinese men and women. Am J Clin Nutr 83:146–154PubMed Hsu YH, Venners SA, Terwedow HA, Feng Y, Niu T, Li Z, Laird N, Brain JD, Cummings SR, Bouxsein ML, Rosen CJ, Xu X (2006) Relation of body composition, fat mass, and serum lipids to osteoporotic fractures and bone mineral density in Chinese men and women. Am J Clin Nutr 83:146–154PubMed
41.
42.
go back to reference Riggs BL, Khosla S, Melton LJ 3rd (2002) Sex steroids and the construction and conservation of the adult skeleton. Endocr Rev 23:279–302PubMedCrossRef Riggs BL, Khosla S, Melton LJ 3rd (2002) Sex steroids and the construction and conservation of the adult skeleton. Endocr Rev 23:279–302PubMedCrossRef
43.
go back to reference Ducy P, Amling M, Takeda S, Priemel M, Schilling AF, Beil FT, Shen J, Vinson C, Rueger JM, Karsenty G (2000) Leptin inhibits bone formation through a hypothalamic relay: a central control of bone mass. Cell 100:197–207PubMedCrossRef Ducy P, Amling M, Takeda S, Priemel M, Schilling AF, Beil FT, Shen J, Vinson C, Rueger JM, Karsenty G (2000) Leptin inhibits bone formation through a hypothalamic relay: a central control of bone mass. Cell 100:197–207PubMedCrossRef
44.
go back to reference Elefteriou F, Ahn JD, Takeda S, Starbuck M, Yang X, Liu X, Kondo H, Richards WG, Bannon TW, Noda M, Clement K, Vaisse C, Karsenty G (2005) Leptin regulation of bone resorption by the sympathetic nervous system and CART. Nature 434:514–520PubMedCrossRef Elefteriou F, Ahn JD, Takeda S, Starbuck M, Yang X, Liu X, Kondo H, Richards WG, Bannon TW, Noda M, Clement K, Vaisse C, Karsenty G (2005) Leptin regulation of bone resorption by the sympathetic nervous system and CART. Nature 434:514–520PubMedCrossRef
45.
go back to reference Luo XH, Guo LJ, Xie H, Yuan LQ, Wu XP, Zhou HD, Liao EY (2006) Adiponectin stimulates RANKL and inhibits OPG expression in human osteoblasts through the MAPK signalling pathway. J Bone Miner Res 21:1648–1656PubMedCrossRef Luo XH, Guo LJ, Xie H, Yuan LQ, Wu XP, Zhou HD, Liao EY (2006) Adiponectin stimulates RANKL and inhibits OPG expression in human osteoblasts through the MAPK signalling pathway. J Bone Miner Res 21:1648–1656PubMedCrossRef
46.
go back to reference Jurimae J, Rembel K, Jurimae T, Rehand M (2005) Adiponectin is associated with bone mineral density in perimenopausal women. Horm Metab Res 37:297–302PubMedCrossRef Jurimae J, Rembel K, Jurimae T, Rehand M (2005) Adiponectin is associated with bone mineral density in perimenopausal women. Horm Metab Res 37:297–302PubMedCrossRef
47.
go back to reference Lenchik L, Register TC, Hsu FC, Lohman K, Nicklas BJ, Freedman BI, Langfield CD, Carr JJ, Boweden DW (2003) Adiponectin as a novel determinant of bone mineral density and visceral fat. Bone 33:646–651PubMedCrossRef Lenchik L, Register TC, Hsu FC, Lohman K, Nicklas BJ, Freedman BI, Langfield CD, Carr JJ, Boweden DW (2003) Adiponectin as a novel determinant of bone mineral density and visceral fat. Bone 33:646–651PubMedCrossRef
48.
go back to reference Oh KW, Lee WY, Rhee EJ, Baek KH, Yoon KH, Kang MI, Yun EJ, Park CY, Ihm SH, Choi MG, Yoo HJ, Park SW (2005) The relationship between serum resistin, leptin, adiponectin, ghrelin levels and bone mineral density in middle-aged men. Clin Endocrinol 63:131–138CrossRef Oh KW, Lee WY, Rhee EJ, Baek KH, Yoon KH, Kang MI, Yun EJ, Park CY, Ihm SH, Choi MG, Yoo HJ, Park SW (2005) The relationship between serum resistin, leptin, adiponectin, ghrelin levels and bone mineral density in middle-aged men. Clin Endocrinol 63:131–138CrossRef
49.
go back to reference Tang ZH, Xiao PX, Lei SF, Deng FY, Zhao LJ, Deng HY, Tan LJ, Shen H, Xiong DH, Recker R, Deng HW (2007) A bivariate whole-genome linkage scan suggests several shared genomic regions for obesity and osteoporosis. J Clin Endocrinol Metab 92:2751–2757PubMedCrossRef Tang ZH, Xiao PX, Lei SF, Deng FY, Zhao LJ, Deng HY, Tan LJ, Shen H, Xiong DH, Recker R, Deng HW (2007) A bivariate whole-genome linkage scan suggests several shared genomic regions for obesity and osteoporosis. J Clin Endocrinol Metab 92:2751–2757PubMedCrossRef
50.
go back to reference Premaor MO, Parker RA, Cummings S, Ensrud K, Cauley J, Lui L, Hillier TA, Compston J, Study of Osteoporotic Fractures (SOF) Research Group (2012) Predictive value of FRAX for fracture in obese older women. J Bone Miner Res 28:188–195CrossRef Premaor MO, Parker RA, Cummings S, Ensrud K, Cauley J, Lui L, Hillier TA, Compston J, Study of Osteoporotic Fractures (SOF) Research Group (2012) Predictive value of FRAX for fracture in obese older women. J Bone Miner Res 28:188–195CrossRef
51.
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
52.
go back to reference Flegal KM, Carroll MD, Kit BK, Ogden CL (2012) Prevalence of obesity and trends in the distribution of body mass index among US adults, 1999–2010. JAMA 307:491–497PubMedCrossRef Flegal KM, Carroll MD, Kit BK, Ogden CL (2012) Prevalence of obesity and trends in the distribution of body mass index among US adults, 1999–2010. JAMA 307:491–497PubMedCrossRef
53.
go back to reference Shields M, Carroll MD, Ogden CL (2011) Adult obesity prevalence in Canada and the United States. NCHS data brief, no 56. National Center for Health Statistics, Hyattsville Shields M, Carroll MD, Ogden CL (2011) Adult obesity prevalence in Canada and the United States. NCHS data brief, no 56. National Center for Health Statistics, Hyattsville
54.
go back to reference Yu EW, Thomas BJ, Brown JK, Finkelstein JS (2012) Simulated increases in body fat and errors in bone mineral density measurements by DXA and QCT. J Bone Miner Res 27:119–124PubMedCrossRef Yu EW, Thomas BJ, Brown JK, Finkelstein JS (2012) Simulated increases in body fat and errors in bone mineral density measurements by DXA and QCT. J Bone Miner Res 27:119–124PubMedCrossRef
55.
go back to reference Fogelholm GM, Sievanen HT, Kukkonen-Harjula TK, Pasanen ME (2001) Bone mineral density during reduction, maintenance and regain of body weight in premenopausal, obese women. Osteoporos Int 12:199–206PubMedCrossRef Fogelholm GM, Sievanen HT, Kukkonen-Harjula TK, Pasanen ME (2001) Bone mineral density during reduction, maintenance and regain of body weight in premenopausal, obese women. Osteoporos Int 12:199–206PubMedCrossRef
56.
go back to reference Binkley N, Krueger D, Vallarta-Ast N (2003) Am overlying fat panniculus affects femur bone mass measurement. J Clin Densitom 6:199–204PubMedCrossRef Binkley N, Krueger D, Vallarta-Ast N (2003) Am overlying fat panniculus affects femur bone mass measurement. J Clin Densitom 6:199–204PubMedCrossRef
Metadata
Title
Women with severe obesity and relatively low bone mineral density have increased fracture risk
Authors
S. Cawsey
R. Padwal
A. M. Sharma
X. Wang
S. Li
K. Siminoski
Publication date
01-01-2015
Publisher
Springer London
Published in
Osteoporosis International / Issue 1/2015
Print ISSN: 0937-941X
Electronic ISSN: 1433-2965
DOI
https://doi.org/10.1007/s00198-014-2833-z

Other articles of this Issue 1/2015

Osteoporosis International 1/2015 Go to the issue