Huo YR, Suriyaarachchi P, Gomez F, Curcio CL, Boersma D, Muir SW, et al. Phenotype of osteosarcopenia in older individuals with a history of falling. J Am Med Dir Assoc. 2015;16(4):290–5.
Article
Google Scholar
Yoo JI, Ha YC, Kwon HB, Lee YK, Koo KH, Yoo MJ. High prevalence of sarcopenia in Korean patients after hip fracture: a case-control study. J Korean Med Sci. 2016;31(9):1479–84. https://doi.org/10.3346/jkms.2016.31.9.1479.
CAS
Article
PubMed
PubMed Central
Google Scholar
Scott D, Seibel M, Cumming R, et al. Does combined osteopenia/osteoporosis and sarcopenia confer greater risk of falls and fracture than either condition alone in older men? The concord health and ageing in men project. J Gerontol Ser A Biol Sci Med Sci. 2019;74(6):827–34.
Article
Google Scholar
Bauer JM, Cruz-Jentoft AJ, Fielding RA, Kanis JA, Reginster JY, Bruyere O, et al. Is there enough evidence for osteosarcopenic obesity as a distinct entity? A critical literature review. Calcif Tiss Int. 2019;105(2):125–6.
CAS
Article
Google Scholar
Hirschfeld HP, Kinsella R, Duque G. Osteosarcopenia: where bone, muscle, and fat collide. Osteoporos Int. 2017;28(10):2781–90.
CAS
Article
Google Scholar
World Health Organization. Assessment of fracture risk and its application to screening for postmenopausal osteoporosis. Geneva: World Health Organization; 1994.
Google Scholar
Kanis JA, Harvey NC, Johansson H, et al. FRAX and fracture prediction without bone mineral density. Climacteric. 2015;18(2):2–9.
Article
Google Scholar
Cawthon PM, Travison TG, Manini TM, et al. Establishing the link between lean mass and grip strength cut-points with mobility disability and other health outcomes: Proceedings of the Sarcopenia Definition and Outcomes Consortium Conference. J Gerontol Series A Bio Sci Med Sci. 2019. [online ahead of publication]. https://doi.org/10.1093/gerona/glz081
Cruz-Jentoft AJ, Baeyens JP, Bauer JP, et al. Sarcopenia: European consensus on definition and diagnosis: report of the European working group on sarcopenia in older people. Age Ageing. 2010;39(4):412–23. https://doi.org/10.1093/ageing/afq034.
Article
PubMed
PubMed Central
Google Scholar
Cruz-Jentoft AJ, Bahat G, Bauer J, Boirie Y, Bruyère O, Cederholm T, et al. Sarcopenia: revised European consensus on definition and diagnosis. Age Ageing. 2019;48(1):16–31.
Article
Google Scholar
Fielding RA, Vellas B, Evans WJ, Bhasin S, Morley JE, Newman AB, et al. Sarcopenia: an undiagnosed condition in older adults. Current consensus definition: prevalence, etiology, and consequences. International working group on sarcopenia. J Am Med Dir Assoc. 2011;12(4):249–56. https://doi.org/10.1016/j.jamda.2011.01.003.
Article
PubMed
Google Scholar
Morley JE, Abbatecola AM, Argiles JM, et al. Sarcopenia with limited mobility: an international consensus. J Am Med Dir Assoc. 2011;12(6):403–9. https://doi.org/10.1016/j.jamda.2011.04.014.
Article
PubMed
PubMed Central
Google Scholar
Chen LK, Liu LK, Woo J, Assantachai P, Auyeung TW, Bahyah KS, et al. Sarcopenia in Asia: consensus report of the Asian Working Group for Sarcopenia. J Am Med Dir Assoc. 2014;15(2):95–101.
Article
Google Scholar
Studenski SA, Peters KW, Alley DE, Cawthon PM, McLean R, Harris TB, et al. The FNIH sarcopenia project: rationale, study description, conference recommendations, and final estimates. J Gerontol A Biol Sci Med Sci. 2014;69(5):547–58. https://doi.org/10.1093/gerona/glu010.
Article
PubMed
PubMed Central
Google Scholar
Rosenberg IH. Summary comments. Am J Clin Nutr. 1989;50(5):1231–3.
Article
Google Scholar
Cawthon PM. Recent progress in sarcopenia research: a focus on operationalizing a definition of sarcopenia. Curr Osteoporos Rep. 2018;16(6):730–7.
Article
Google Scholar
Evans WJ, Morley JE, Argiles J, et al. Cachexia: a new definition. Clin Nutr. 2008;27:793–9.
CAS
Article
Google Scholar
Evans WJ, Hellerstein M, Orwoll E, et al. D3-Creatine dilution and the importance of accuracy in the assessment of skeletal muscle mass. J Cachexia Sarcopenia Muscle. 2019;10(1):14–21.
Article
Google Scholar
Lee K, Shin Y, Huh J, Sung YS, Lee IS, Yoon KH, et al. Recent issues on body composition imaging for sarcopenia evaluation. Korean J Radiol. 2019;20(2):205–17.
Article
Google Scholar
Schaap LA, Koster A, Visser M. Adiposity, muscle mass, and muscle strength in relation to functional decline in older persons. Epidemiol Rev. 2013;35:51–65.
Article
Google Scholar
Dent E, Morley JE, Cruz-Jentoft AJ, et al. International clinical practice guidelines for sarcopenia (ICFSR): screening, diagnosis and management. J Nutr Health Aging. 2018;22:1148.
CAS
Article
Google Scholar
Ormsbee MJ, Prado CM, Ilich JZ, et al. Osteosarcopenic obesity: the role of bone, muscle, and fat on health. J Cachexia Sarcopenia Muscle. 2014;5(3):183–92.
Article
Google Scholar
Trajanoska K, Rivadeneira F, Kiel DP, et al. Genetics of muscle and bone interactions in humans. Curr Osteoporos Rep. 2019;17:86.
Article
Google Scholar
Zanker J, Duque G. Osteoporosis in older persons: old and new players. J Am Geriatr Soc. 2019;67:831–40.
Article
Google Scholar
Nielsen BR, Abdulla J, Andersen HE, et al. Sarcopenia and osteoporosis in older people: a systematic review and meta-analysis. Eur Geriatr Med. 2018;9:419–34.
Article
Google Scholar
Balogun S, Winzenberg T, Wills K, et al. Prospective associations of osteosarcopenia and osteodynapenia with incident fracture and mortality over 10 years in community-dwelling older adults. Arc Gerontol Geriatr. 2019;82:67–73.
Article
Google Scholar
Sepúlveda-Loyola W, Phu S, Bani Hassan E, et al. The joint occurrence of osteoporosis and sarcopenia (osteosarcopenia). J Am Med Dir Assoc. 2019 [online ahead of print].
Clark RV, Walker AC, O'Connor-Semmes RL, Leonard MS, Miller RR, Stimpson SA, et al. Total body skeletal muscle mass: estimation by creatine (methyl-d3) dilution in humans. J Appl Physiol. 2014;116(12):1605–13.
CAS
Article
Google Scholar
Cawthon PM, Orwoll ES, Peters KE, et al. Strong relation between muscle mass determined by D3-creatine dilution, physical performance and incidence of falls and mobility limitations in a prospective cohort of older men. J Gerontol A Biol Sci Med Sci. 2019;74(6):844–52.
Article
Google Scholar
Cawthon PM, Peters KE, Cummings SR, et al. Association between muscle mass determined by D3-creatine dilution and incident fractures in a prospective cohort study of older men. 2019 [submitted].
Cawthon PM, Blackwell TMS, Cummings SR, et al. Muscle mass assessed by D3-creatine dilution method and incident disability and mortality in community dwelling older men. 2019 [submitted].
Becker C, Lord SR, Studenski SA, et al. Myostatin antibody (LY2495655) in older weak fallers: a proof-of-concept, randomised, phase 2 trial. Lancet Diab Endocrinol. 2015;3(12):948–57.
CAS
Article
Google Scholar
Dobs AS, Nguyen T, Pace C, Roberts CP. Differential effects of oral estrogen versus oral estrogen androgen replacement therapy on body composition in postmenopausal women. J Clin Endocrinol Metab. 2002;87:1509–16.
CAS
Article
Google Scholar
Papanicolaou DA, Ather SN, Zhu H, et al. A phase IIA randomized, placebo-controlled clinical trial to study the efficacy and safety of the selective androgen receptor modulator (SARM), MK-0773 in female participants with sarcopenia. J Nutr Health Aging. 2013;17:533–43.
CAS
Article
Google Scholar
Bonnet N, Bourgoin L, Biver E, Douni E, Ferrari S. RANKL inhibition improves muscle strength and insulin sensitivity and restores bone mass. J Clin Invest. 2019;23:130.
Google Scholar
Al Saedi A, Feehan J, Duque G. The diagnostic role of fat in osteosarcopenia. J Lab Precis Med. 2019;4:7.
Article
Google Scholar