Wang ZM, Pierson RN Jr, Heymsfield SB (1992) The five-level model: a new approach to organizing body-composition research. Am J Clin Nutr 56(1):19–28
Article CAS PubMed Google Scholar
Cederholm T, Jensen GL, Correia MITD, Gonzalez MC, Fukushima R, Higashiguchi T et al (2019) GLIM criteria for the diagnosis of malnutrition—A consensus report from the global clinical nutrition community. Clin Nutr Edinb Scotl 38(1):1–9
Cruz-Jentoft AJ, Bahat G, Bauer J, Boirie Y, Bruyère O, Cederholm T et al (2019) Sarcopenia: revised European consensus on definition and diagnosis. Age Ageing 48(1):16–31
Yeung SSY, Reijnierse EM, Pham VK, Trappenburg MC, Lim WK, Meskers CGM et al (2019) Sarcopenia and its association with falls and fractures in older adults: a systematic review and meta-analysis. J Cachexia Sarcopenia Muscle 10(3):485–500
Article PubMed PubMed Central Google Scholar
Liu P, Hao Q, Hai S, Wang H, Cao L, Dong B (2017) Sarcopenia as a predictor of all-cause mortality among community-dwelling older people: a systematic review and meta-analysis. Maturitas 103:16–22
Neeland IJ, Ross R, Després JP, Matsuzawa Y, Yamashita S, Shai I et al (2019) Visceral and ectopic fat, atherosclerosis, and cardiometabolic disease: a position statement. Lancet Diabetes Endocrinol 7(9):715–25
Thibault R, Abbasoglu O, Ioannou E, Meija L, Ottens-Oussoren K, Pichard C et al (2021) ESPEN guideline on hospital nutrition. Clin Nutr Edinb Scotl 40(12):5684–5709
Sheean P, Gonzalez MC, Prado CM, McKeever L, Hall AM, Braunschweig CA (2020) American Society for Parenteral and Enteral Nutrition Clinical Guidelines: the validity of body composition assessment in clinical populations. JPEN J Parenter Enteral Nutr 44(1):12–43
Kaiser MJ, Bauer JM, Ramsch C, Uter W, Guigoz Y, Cederholm T et al (2009) Validation of the Mini Nutritional Assessment short-form (MNA®-SF): a practical tool for identification of nutritional status. JNHA—J Nutr Health Aging 13(9):782
Elia M, British Association for Parenteral and Enteral Nutrition Advisory Group on Malnutrition. Guidelines for detection and management of malnutrition. Maidenhead: BAPEN Maidenhead; 2000.
Ozturk Y, Deniz O, Coteli S, Unsal P, Dikmeer A, Burkuk S et al (2022) Global Leadership Initiative on Malnutrition criteria with different muscle assessments including muscle ultrasound with hospitalized internal medicine patients. JPEN J Parenter Enteral Nutr 46(4):936–45
Cruz-Jentoft AJ, Bahat G, Bauer J, Boirie Y, Bruyère O, Cederholm T et al (2019) Sarcopenia: revised European consensus on definition and diagnosis. Age Ageing 48(1):16–31
Donini LM, Busetto L, Bischoff SC, Cederholm T, Ballesteros-Pomar MD, Batsis JA et al (2022) Definition and diagnostic criteria for sarcopenic obesity: ESPEN and EASO consensus statement. Obes Facts 15(3):321–35
Article PubMed PubMed Central Google Scholar
Mareschal J, Achamrah N, Norman K, Genton L (2019) Clinical value of muscle mass assessment in clinical conditions associated with malnutrition. J Clin Med 8(7):1040
Article PubMed PubMed Central Google Scholar
Beaudart C, McCloskey E, Bruyère O, Cesari M, Rolland Y, Rizzoli R et al (2016) Sarcopenia in daily practice: assessment and management. BMC Geriatr 16(1):170–170
Article PubMed PubMed Central Google Scholar
Ceniccola GD, Castro MG, Piovacari SMF, Horie LM, Corrêa FG, Barrere APN et al (2019) Current technologies in body composition assessment: advantages and disadvantages. Nutrition 62:25–31
Nijholt W, Scafoglieri A, Jager-Wittenaar H, Hobbelen JSM, van der Schans CP (2017) The reliability and validity of ultrasound to quantify muscles in older adults: a systematic review. J Cachexia Sarcopenia Muscle 8(5):702–12
Article PubMed PubMed Central Google Scholar
Takahashi Y, Fujino Y, Miura K, Toida A, Matsuda T, Makita S (2021) Intra- and inter-rater reliability of rectus femoris muscle thickness measured using ultrasonography in healthy individuals. Ultrasound J 13(1):21
Article CAS PubMed PubMed Central Google Scholar
Zaidman CM, Wu JS, Wilder S, Darras BT, Rutkove SB (2014) Minimal training is required to reliably perform quantitative ultrasound of muscle. Muscle Nerve 50(1):124–8
Article PubMed PubMed Central Google Scholar
Perkisas S, Bastijns S, Baudry S, Bauer J, Beaudart C, Beckwée D et al (2021) Application of ultrasound for muscle assessment in sarcopenia: 2020 SARCUS update. Eur Geriatr Med 12(1):45–59
Merrigan JJ, White JB, Hu YE, Stone JD, Oliver JM, Jones MT (2018) Differences in elbow extensor muscle characteristics between resistance-trained men and women. Eur J Appl Physiol 118(11):2359–2366
Atkinson RA, Srinivas-Shankar U, Roberts SA, Connolly MJ, Adams JE, Oldham JA et al (2010) Effects of testosterone on skeletal muscle architecture in intermediate-frail and frail elderly men. J Gerontol A Biol Sci Med Sci 65(11):1215–9
Zhu S, Lin W, Chen S, Qi H, Wang S, Zhang A et al (2019) The correlation of muscle thickness and pennation angle assessed by ultrasound with sarcopenia in elderly Chinese community dwellers. Clin Interv Aging 14:987–96
Article PubMed PubMed Central Google Scholar
Dankel SJ, Abe T, Bell ZW, Jessee MB, Buckner SL, Mattocks KT et al (2020) The Impact of Ultrasound Probe Tilt on Muscle Thickness and Echo-Intensity: A Cross-Sectional Study. J Clin Densitom Off J Int Soc Clin Densitom. 23(4):630–8
Watanabe Y, Yamada Y, Fukumoto Y, Ishihara T, Yokoyama K, Yoshida T et al (2013) Echo intensity obtained from ultrasonography images reflecting muscle strength in elderly men. Clin Interv Aging 8:993–8
Article PubMed PubMed Central Google Scholar
Perkisas S, Baudry S, Bauer J, Beckwée D, De Cock AM, Hobbelen H et al (2018) Application of ultrasound for muscle assessment in sarcopenia: towards standardized measurements. Eur Geriatr Med 9(6):739–757
Hammond K, Mampilly J, Laghi FA, Goyal A, Collins EG, McBurney C et al (2014) Validity and reliability of rectus femoris ultrasound measurements: comparison of curved-array and linear-array transducers. J Rehabil Res Dev 51(7):1155–1164
García-Almeida JM, García-García C, Vegas-Aguilar IM, Ballesteros Pomar MD, Cornejo-Pareja IM, Fernández Medina B, et al. Nutritional ultrasound®: Conceptualisation, technical considerations and standardisation. Endocrinol Diabetes Nutr [Internet]. 13 de julio de 2022; Disponible en: https://www.sciencedirect.com/science/article/pii/S2530016422001471
de Luis RD, García Almeida JM, Bellido Guerrero D, Guzmán Rolo G, Martín A, Primo Martín D et al (2024) Ultrasound cut-off values for rectus Femoris for detecting Sarcopenia in patients with nutritional risk. Nutrients 16(11):1552
Jung Lee S, Janssen I, Heymsfield SB, Ross R (2004) Relation between whole-body and regional measures of human skeletal muscle. Am J Clin Nutr 80(5):1215–21
Berger J, Bunout D, Barrera G, de la Maza MP, Henriquez S, Leiva L et al (2015) Rectus femoris (RF) ultrasound for the assessment of muscle mass in older people. Arch Gerontol Geriatr agosto de 61(1):33–38
Barotsis N, Galata A, Hadjiconstanti A, Panayiotakis G (2020) The ultrasonographic measurement of muscle thickness in sarcopenia. A prediction study. Eur J Phys Rehabil Med 56(4):427–37
López-Gómez JJ, García-Beneitez D, Jiménez-Sahagún R, Izaola-Jauregui O, Primo-Martín D, Ramos-Bachiller B et al (2023) Nutritional ultrasonography, a method to evaluate muscle mass and quality in morphofunctional assessment of disease related malnutrition. Nutrients 15(18):3923
Article PubMed PubMed Central Google Scholar
Rustani K, Kundisova L, Capecchi PL, Nante N, Bicchi M (2019) Ultrasound measurement of rectus femoris muscle thickness as a quick screening test for sarcopenia assessment. Arch Gerontol Geriatr 83:151–4
Fukumoto Y, Ikezoe T, Taniguchi M, Yamada Y, Sawano S, Minani S et al (2021) Cut-off values for lower limb muscle thickness to detect low muscle mass for sarcopenia in older adults. Clin Interv Aging 16:1215–1222
Comments (0)