Diagnostic measures for sarcopenia and bone mineral density (original) (raw)
References
Buford TW, Anton SD, Judge AR, Marzetti E, Wohlgemuth SE, Carter CS, Leeuwenburgh C, Pahor M, Manini TM (2010) Models of accelerated sarcopenia: critical pieces for solving the puzzle of age-related muscle atrophy. Ageing Res Rev 9:369–383 ArticlePubMed Google Scholar
Rosenberg IH (1997) Sarcopenia: origins and clinical relevance. J Nutr 127:990S–991S PubMedCAS Google Scholar
Cruz-Jentoft AJ, Baeyens JP, Bauer JM, Boirie Y, Cederholm T, Landi F, Martin FC, Michel JP, Rolland Y, Schneider SM, Topinkova E, Vandewoude M, Zamboni M (2010) Sarcopenia: European consensus on definition and diagnosis: report of the European Working Group on Sarcopenia in Older People. Age Ageing 39:412–423 ArticlePubMed Google Scholar
Fielding RA, Vellas B, Evans WJ, Bhasin S, Morley JE, Newman AB, van Abellan KG, Andrieu S, Bauer J, Breuille D, Cederholm T, Chandler J, De MC, Donini L, Harris T, Kannt A, Keime GF, Onder G, Papanicolaou D, Rolland Y, Rooks D, Sieber C, Souhami E, Verlaan S, Zamboni M (2011) Sarcopenia: an undiagnosed condition in older adults. Current consensus definition: prevalence, etiology, and consequences. International working group on sarcopenia. J Am Med Dir Assoc 12:249–256 ArticlePubMed Google Scholar
Baumgartner RN, Koehler KM, Gallagher D, Romero L, Heymsfield SB, Ross RR, Garry PJ, Lindeman RD (1998) Epidemiology of sarcopenia among the elderly in New Mexico. Am J Epidemiol 147:755–763 ArticlePubMedCAS Google Scholar
Delmonico MJ, Harris TB, Lee JS, Visser M, Nevitt M, Kritchevsky SB, Tylavsky FA, Newman AB (2007) Alternative definitions of sarcopenia, lower extremity performance, and functional impairment with aging in older men and women. J Am Geriatr Soc 55:769–774 ArticlePubMed Google Scholar
Estrada M, Kleppinger A, Judge JO, Walsh SJ, Kuchel GA (2007) Functional impact of relative versus absolute sarcopenia in healthy older women. J Am Geriatr Soc 55:1712–1719 ArticlePubMed Google Scholar
Bijlsma AY, Meskers CG, Ling CH, Narici M, Kurrle SE, Cameron ID, Westendorp RG, Maier AB (2012). Defining sarcopenia: the impact of different diagnostic criteria on the prevalence of sarcopenia in a large middle aged cohort. Age (Dordr)
Kalyani RR, Metter EJ, Ramachandran R, Chia CW, Saudek CD, Ferrucci L (2012) Glucose and insulin measurements from the oral glucose tolerance test and relationship to muscle mass. J Gerontol A Biol Sci Med Sci 67:74–81 ArticlePubMed Google Scholar
Bijlsma A.Y., Meskers CG, van Heemst D., Westendorp RG, Craen AJM, Maier AB (2012) Definitions of sarcopenia relate differently to insulin resistance. Submitted
Morgan DJ, Bray KM (1994) Lean body mass as a predictor of drug dosage. Implications for drug therapy. Clin Pharmacokinet 26:292–307 ArticlePubMedCAS Google Scholar
Englesbe MJ, Patel SP, He K, Lynch RJ, Schaubel DE, Harbaugh C, Holcombe SA, Wang SC, Segev DL, Sonnenday CJ (2010) Sarcopenia and mortality after liver transplantation. J Am Coll Surg 211:271–278 ArticlePubMed Google Scholar
van Vledder MG, Levolger S, Ayez N, Verhoef C, Tran TC, Ijzermans JN (2012) Body composition and outcome in patients undergoing resection of colorectal liver metastases. Br J Surg 99:550–557 ArticlePubMed Google Scholar
Cheng Q, Zhu YX, Zhang MX, Li LH, Du PY, Zhu MH (2012) Age and sex effects on the association between body composition and bone mineral density in healthy Chinese men and women. Menopause 19:448–455 ArticlePubMed Google Scholar
Park JH, Song YM, Sung J, Lee K, Kim YS, Kim T, Cho SI (2012) The association between fat and lean mass and bone mineral density: the Healthy Twin Study. Bone 50:1006–1011 ArticlePubMed Google Scholar
Verschueren S, Gielen E, O'Neill TW, Pye SR, Adams JE, Ward KA, Wu FC, Szulc P, Laurent M, Claessens F, Vanderschueren D, Boonen S (2012) Sarcopenia and its relationship with bone mineral density in middle-aged and elderly European men. Osteoporos Int
Rochefort GY, Pallu S, Benhamou CL (2010) Osteocyte: the unrecognized side of bone tissue. Osteoporos Int 21:1457–1469 ArticlePubMedCAS Google Scholar
Lima RM, Bezerra LM, Rabelo HT, Silva MA, Silva AJ, Bottaro M, de Oliveira RJ (2009) Fat-free mass, strength, and sarcopenia are related to bone mineral density in older women. J Clin Densitom 12:35–41 ArticlePubMed Google Scholar
Marin RV, Pedrosa MA, Moreira-Pfrimer LD, Matsudo SM, Lazaretti-Castro M (2010) Association between lean mass and handgrip strength with bone mineral density in physically active postmenopausal women. J Clin Densitom 13:96–101 ArticlePubMed Google Scholar
Lindsey C, Brownbill RA, Bohannon RA, Ilich JZ (2005) Association of physical performance measures with bone mineral density in postmenopausal women. Arch Phys Med Rehabil 86:1102–1107 ArticlePubMed Google Scholar
Palombaro KM, Hack LM, Mangione KK, Barr AE, Newton RA, Magri F, Speziale T (2009) Gait variability detects women in early postmenopause with low bone mineral density. Phys Ther 89:1315–1326 ArticlePubMed Google Scholar
Faulkner KG, Roberts LA, McClung MR (1996) Discrepancies in normative data between Lunar and Hologic DXA systems. Osteoporos Int 6:432–436 ArticlePubMedCAS Google Scholar
Janssen I, Heymsfield SB, Ross R (2002) Low relative skeletal muscle mass (sarcopenia) in older persons is associated with functional impairment and physical disability. J Am Geriatr Soc 50:889–896 ArticlePubMed Google Scholar
Sternfeld B, Ngo L, Satariano WA, Tager IB (2002) Associations of body composition with physical performance and self-reported functional limitation in elderly men and women. Am J Epidemiol 156:110–121 ArticlePubMed Google Scholar
Lauretani F, Russo CR, Bandinelli S, Bartali B, Cavazzini C, Di IA, Corsi AM, Rantanen T, Guralnik JM, Ferrucci L (2003) Age-associated changes in skeletal muscles and their effect on mobility: an operational diagnosis of sarcopenia. J Appl Physiol 95:1851–1860 PubMed Google Scholar
Narici MV, Maffulli N (2010) Sarcopenia: characteristics, mechanisms and functional significance. Br Med Bull 95:139–159 ArticlePubMedCAS Google Scholar
Rantanen T, Avlund K, Suominen H, Schroll M, Frandin K, Pertti E (2002) Muscle strength as a predictor of onset of ADL dependence in people aged 75 years. Aging Clin Exp Res 14:10–15 PubMed Google Scholar
Clark BC, Manini TM (2008) Sarcopenia =/= dynapenia. J Gerontol A Biol Sci Med Sci 63:829–834 ArticlePubMed Google Scholar
Mitchell WK, Williams J, Atherton P, Larvin M, Lund J, Narici M (2012) Sarcopenia, dynapenia, and the impact of advancing age on human skeletal muscle size and strength; a quantitative review. Front Physiol 3:260 ArticlePubMed Google Scholar
Genaro PS, Pereira GA, Pinheiro MM, Szejnfeld VL, Martini LA (2010) Influence of body composition on bone mass in postmenopausal osteoporotic women. Arch Gerontol Geriatr 51:295–298 ArticlePubMed Google Scholar
Taaffe DR, Cauley JA, Danielson M, Nevitt MC, Lang TF, Bauer DC, Harris TB (2001) Race and sex effects on the association between muscle strength, soft tissue, and bone mineral density in healthy elders: the Health, Aging, and Body Composition Study. J Bone Miner Res 16:1343–1352 ArticlePubMedCAS Google Scholar
Taes YE, Lapauw B, Vanbillemont G, Bogaert V, De BD, Zmierczak H, Goemaere S, Kaufman JM (2009) Fat mass is negatively associated with cortical bone size in young healthy male siblings. J Clin Endocrinol Metab 94:2325–2331 ArticlePubMedCAS Google Scholar
Wang MC, Bachrach LK, Van LM, Hudes M, Flegal KM, Crawford PB (2005) The relative contributions of lean tissue mass and fat mass to bone density in young women. Bone 37:474–481 ArticlePubMedCAS Google Scholar
Szulc P, Beck TJ, Marchand F, Delmas PD (2005) Low skeletal muscle mass is associated with poor structural parameters of bone and impaired balance in elderly men—the MINOS study. J Bone Miner Res 20:721–729 ArticlePubMed Google Scholar
Di MM, Vallero F, Di MR, Tappero R, Cavanna A (2007) Skeletal muscle mass, fat mass, and hip bone mineral density in elderly women with hip fracture. J Bone Miner Metab 25:237–242 Article Google Scholar
Blain H, Vuillemin A, Teissier A, Hanesse B, Guillemin F, Jeandel C (2001) Influence of muscle strength and body weight and composition on regional bone mineral density in healthy women aged 60 years and over. Gerontology 47:207–212 ArticlePubMedCAS Google Scholar
Bayramoglu M, Sozay S, Karatas M, Kilinc S (2005) Relationships between muscle strength and bone mineral density of three body regions in sedentary postmenopausal women. Rheumatol Int 25:513–517 ArticlePubMed Google Scholar
Dixon WG, Lunt M, Pye SR, Reeve J, Felsenberg D, Silman AJ, O'Neill TW (2005) Low grip strength is associated with bone mineral density and vertebral fracture in women. Rheumatology (Oxford) 44:642–646 ArticleCAS Google Scholar
Shin H, Panton LB, Dutton GR, Ilich JZ (2011) Relationship of physical performance with body composition and bone mineral density in individuals over 60 years of age: a systematic review. J Aging Res 2011:191896 PubMed Google Scholar
Tom SE, Adachi JD, Anderson FA, Jr., Boonen S, Chapurlat RD, Compston JE, Cooper C, Gehlbach SH, Greenspan SL, Hooven FH, Nieves JW, Pfeilschifter J, Roux C, Silverman S, Wyman A, Lacroix AZ (2013) Frailty and fracture, disability, and falls: a multiple country study from the Global Longitudinal Study of Osteoporosis in Women. J Am Geriatr Soc
Woods NF, Lacroix AZ, Gray SL, Aragaki A, Cochrane BB, Brunner RL, Masaki K, Murray A, Newman AB (2005) Frailty: emergence and consequences in women aged 65 and older in the Women's Health Initiative Observational Study. J Am Geriatr Soc 53:1321–1330 ArticlePubMed Google Scholar
Ensrud KE, Ewing SK, Taylor BC, Fink HA, Cawthon PM, Stone KL, Hillier TA, Cauley JA, Hochberg MC, Rodondi N, Tracy JK, Cummings SR (2008) Comparison of 2 frailty indexes for prediction of falls, disability, fractures, and death in older women. Arch Intern Med 168:382–389 ArticlePubMed Google Scholar
Bocalini DS, Serra AJ, Dos SL (2010) Moderate resistive training maintains bone mineral density and improves functional fitness in postmenopausal women. J Aging Res 2010:760818 PubMed Google Scholar
Karsenty G, Ferron M (2012) The contribution of bone to whole-organism physiology. Nature 481:314–320 ArticlePubMedCAS Google Scholar
Cornish J, Callon KE, Bava U, Lin C, Naot D, Hill BL, Grey AB, Broom N, Myers DE, Nicholson GC, Reid IR (2002) Leptin directly regulates bone cell function in vitro and reduces bone fragility in vivo. J Endocrinol 175:405–415 ArticlePubMedCAS Google Scholar
Peppa M, Koliaki C, Nikolopoulos P, Raptis SA (2010) Skeletal muscle insulin resistance in endocrine disease. J Biomed Biotechnol 2010:527850 ArticlePubMed Google Scholar
Bostrom P, Wu J, Jedrychowski MP, Korde A, Ye L, Lo JC, Rasbach KA, Bostrom EA, Choi JH, Long JZ, Kajimura S, Zingaretti MC, Vind BF, Tu H, Cinti S, Hojlund K, Gygi SP, Spiegelman BM (2012) A PGC1-alpha-dependent myokine that drives brown-fat-like development of white fat and thermogenesis. Nature 481:463–468 ArticlePubMed Google Scholar
Yu Z, Zhu Z, Tang T, Dai K, Qiu S (2009) Effect of body fat stores on total and regional bone mineral density in perimenopausal Chinese women. J Bone Miner Metab 27:341–346 ArticlePubMed Google Scholar
Douchi T, Yamamoto S, Oki T, Maruta K, Kuwahata R, Nagata Y (2000) Relationship between body fat distribution and bone mineral density in premenopausal Japanese women. Obstet Gynecol 95:722–725 ArticlePubMedCAS Google Scholar