Sarcopenia is an age-related loss of muscle mass that may affect over 25% of individuals over the age of 60 and results in a 3 to 4 times increased likelihood of developing a disability. Despite these observations, sarcopenia is rarely subject to a systematic screening process as a part of customary geriatric care. Furthermore, when lean body mass (LBM) is measured via dual energy X-ray absorptiometry (DXA) in older adults, it is typically within a reactive, hospital-based, model of healthcare where muscle wasting is only assessed after a loss of functional independence. The investigators propose an affordable, portable screening method with ultrasound imaging to be performed in primary care settings. The investigators long term goal is to identify individuals at risk, and intervene with treatments that may prevent the onset of debilitating loss of muscle function in the elderly.
Purpose: The overall goal of this pilot project is to validate a rapid, portable, cost-effective, sarcopenia identification method using diagnostic sonography. This method would be used for screening to aid early detection, diagnosis in clinical settings, and monitoring the effects of formal intervention. The investigators central hypothesis is that the sonographic muscle characteristics will be significantly associated with estimates of lean body mass (LBM) and functional status. Research Setting: George Washington University, Exercise Science Laboratory. Participants: Subjects will include a healthy young reference group (18 - 29 years of age) and an older comparison group (55 - 75 years of age; n = 15 per group; approximately 50% female), consecutively recruited from George Washington University and the surrounding community. Implications/Significance: Diagnostic musculoskeletal ultrasound is a portable, inexpensive modality suitable for bedside use or community health initiatives, and features no exposure to low-dose radiation. It is important to note that DXA is considered a relatively low cost procedure, and DXA-based measures may continue to be used as the standard for the sarcopenia syndrome LBM criterion. Consequently, this study will examine if LBM values obtained with ultrasound may serve as a viable proxy of LBM measures obtained with DXA. The innovation in the investigators study is reflected by a proactive approach to sarcopenia screening that is responsive to the growing shift of healthcare from hospitals to alternative, community-based settings.
Study Type
OBSERVATIONAL
Enrollment
34
Exposure: Participants will undergo DXA scanning in the supine position per manufacturer guidelines to estimate absolute and percentage of total lean body mass (LBM) and body fat (BF).
George Washington University
Washington D.C., District of Columbia, United States
Sonographic Lean Body Mass
US estimates of aggregate regional LBM (muscle thickness, cm), will be assessed using B-mode diagnostic US with a 13-6 megahertz linear array transducer for morphology measures at 5 axial and appendicular sites.
Time frame: 1 day
DXA lean body mass
Participants will undergo dual energy X-ray absorptiometry (DXA) scanning in the supine position per manufacturer guidelines to estimate absolute and percentage of total LBM, and body fat percentage (BF%).
Time frame: 1 day
Grip strength
Grip strength will be assessed bilaterally using a isometric dynamometer.
Time frame: 1 day
Lower extremity function
A standardized timed sit-to-stand test will be conducted (5 repetitions).
Time frame: 1 day
Physical activity questionnaire
Participants will also complete the International Physical Activity Questionnaire (IPAQ) to obtain an estimate of their customary activity and formal exercise.
Time frame: 1 day
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