Measurement of muscle mass in sarcopenia: from imaging to biochemical markers
Sarcopenia encompasses the loss of muscle mass and strength/function during aging. Several methods are available for the estimation of muscle or lean body mass. Popular assessment tools include body imaging techniques (e.g., magnetic resonance imaging, computed tomography, dual X-ray absorptiometry,...
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Published in | Aging clinical and experimental research Vol. 29; no. 1; pp. 19 - 27 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Cham
Springer International Publishing
01.02.2017
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 1720-8319 1594-0667 1720-8319 |
DOI | 10.1007/s40520-016-0717-0 |
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Abstract | Sarcopenia encompasses the loss of muscle mass and strength/function during aging. Several methods are available for the estimation of muscle or lean body mass. Popular assessment tools include body imaging techniques (e.g., magnetic resonance imaging, computed tomography, dual X-ray absorptiometry, ultrasonography), bioelectric impedance analysis, anthropometric parameters (e.g., calf circumference, mid-arm muscle circumference), and biochemical markers (total or partial body potassium, serum and urinary creatinine, deuterated creatine dilution method). The heterogeneity of the populations to be evaluated as well as the setting in which sarcopenia is investigated impacts the definition of “gold standard” assessment techniques. The aim of this article is to critically review available methods for muscle mass estimation, highlighting strengths and weaknesses of each of them as well as their proposed field of application. |
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AbstractList | Sarcopenia encompasses the loss of muscle mass and strength/function during aging. Several methods are available for the estimation of muscle or lean body mass. Popular assessment tools include body imaging techniques (e.g., magnetic resonance imaging, computed tomography, dual X-ray absorptiometry, ultrasonography), bioelectric impedance analysis, anthropometric parameters (e.g., calf circumference, mid-arm muscle circumference), and biochemical markers (total or partial body potassium, serum and urinary creatinine, deuterated creatine dilution method). The heterogeneity of the populations to be evaluated as well as the setting in which sarcopenia is investigated impacts the definition of "gold standard" assessment techniques. The aim of this article is to critically review available methods for muscle mass estimation, highlighting strengths and weaknesses of each of them as well as their proposed field of application.Sarcopenia encompasses the loss of muscle mass and strength/function during aging. Several methods are available for the estimation of muscle or lean body mass. Popular assessment tools include body imaging techniques (e.g., magnetic resonance imaging, computed tomography, dual X-ray absorptiometry, ultrasonography), bioelectric impedance analysis, anthropometric parameters (e.g., calf circumference, mid-arm muscle circumference), and biochemical markers (total or partial body potassium, serum and urinary creatinine, deuterated creatine dilution method). The heterogeneity of the populations to be evaluated as well as the setting in which sarcopenia is investigated impacts the definition of "gold standard" assessment techniques. The aim of this article is to critically review available methods for muscle mass estimation, highlighting strengths and weaknesses of each of them as well as their proposed field of application. Sarcopenia encompasses the loss of muscle mass and strength/function during aging. Several methods are available for the estimation of muscle or lean body mass. Popular assessment tools include body imaging techniques (e.g., magnetic resonance imaging, computed tomography, dual X-ray absorptiometry, ultrasonography), bioelectric impedance analysis, anthropometric parameters (e.g., calf circumference, mid-arm muscle circumference), and biochemical markers (total or partial body potassium, serum and urinary creatinine, deuterated creatine dilution method). The heterogeneity of the populations to be evaluated as well as the setting in which sarcopenia is investigated impacts the definition of “gold standard” assessment techniques. The aim of this article is to critically review available methods for muscle mass estimation, highlighting strengths and weaknesses of each of them as well as their proposed field of application. |
Author | Calvani, Riccardo Landi, Francesco Bernabei, Roberto Tosato, Matteo Cesari, Matteo Marzetti, Emanuele Miller, Ram R. Savera, Giulia |
Author_xml | – sequence: 1 givenname: Matteo surname: Tosato fullname: Tosato, Matteo organization: Department of Geriatrics, Neurosciences and Orthopedics, Catholic University of the Sacred Heart School of Medicine – sequence: 2 givenname: Emanuele surname: Marzetti fullname: Marzetti, Emanuele organization: Department of Geriatrics, Neurosciences and Orthopedics, Catholic University of the Sacred Heart School of Medicine – sequence: 3 givenname: Matteo surname: Cesari fullname: Cesari, Matteo organization: Gérontopôle, Centre Hospitalier Universitaire de Toulouse, Université de Toulouse III Paul Sabatier – sequence: 4 givenname: Giulia surname: Savera fullname: Savera, Giulia organization: Department of Geriatrics, Neurosciences and Orthopedics, Catholic University of the Sacred Heart School of Medicine – sequence: 5 givenname: Ram R. surname: Miller fullname: Miller, Ram R. organization: Novartis Institutes for Biomedical Research – sequence: 6 givenname: Roberto surname: Bernabei fullname: Bernabei, Roberto organization: Department of Geriatrics, Neurosciences and Orthopedics, Catholic University of the Sacred Heart School of Medicine – sequence: 7 givenname: Francesco surname: Landi fullname: Landi, Francesco organization: Department of Geriatrics, Neurosciences and Orthopedics, Catholic University of the Sacred Heart School of Medicine – sequence: 8 givenname: Riccardo surname: Calvani fullname: Calvani, Riccardo email: riccardo.calvani@gmail.com organization: Department of Geriatrics, Neurosciences and Orthopedics, Catholic University of the Sacred Heart School of Medicine |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28176249$$D View this record in MEDLINE/PubMed |
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Keywords | Body imaging Muscle strength Biomarkers Diagnosis DXA Physical function Appendicular lean mass |
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SubjectTerms | Absorptiometry, Photon Aged Aged, 80 and over Aging - physiology Anthropometry - methods Biomarkers - blood Biomarkers - urine Body Composition Creatine - analysis Geriatrics/Gerontology Humans Magnetic Resonance Imaging Medicine Medicine & Public Health Muscle Strength Muscle, Skeletal - chemistry Muscle, Skeletal - diagnostic imaging Muscle, Skeletal - pathology Muscle, Skeletal - physiopathology Myography - methods Potassium - analysis Review Article Sarcopenia Sarcopenia - diagnosis Sarcopenia - physiopathology Tomography, X-Ray Computed |
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Title | Measurement of muscle mass in sarcopenia: from imaging to biochemical markers |
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