Prolonged periods of reduced activity are associated with decreased vascular function and muscle atrophy. Physical inactivity due to a sedentary lifestyle or acute hospitalization is also associated with impaired recovery, hospital readmission, and increased mortality. Older adults are a particularly vulnerable population as functional (vascular and skeletal muscle mitochondrial dysfunction) and structural deficits (loss in muscle mass leading to a reduction in strength) are a consequence of the aging process. The combination of inactivity and aging poses an added health threat to these individuals by accelerating the negative impact on vascular and skeletal muscle function and dysfunction. The underlying factors leading to vascular and skeletal muscle dysfunction are unknown, but have been linked to increases in oxidative stress. Additionally, there is a lack of understanding of how vascular function is impacted by inactivity in humans and how these changes are related to skeletal muscle function. It is the goal of this study to investigate the mechanisms that contribute to disuse muscle atrophy and vascular dysfunction in order to diminish their negative impact, and preserve vascular and skeletal muscle function.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
14
Subjects reduce daily step counts by approximately 70% through monitoring and recording from step-count monitor
VA Medical Center Building
Salt Lake City, Utah, United States
Brachial Artery Vascular Function
The flow rate of brachial artery measured by flow-mediated dilation (FDM). Doppler ultrasound will be used to determine brachial artery vascular function. Specifically, this assessment will include the measurement of flow rate and artery diameter at rest and in response to flow mediated dilation.
Time frame: Baseline, during reduced activity (2 weeks) and 2 weeks post reduced activity (4 weeks)
Popliteal Artery Vascular Function
Flow rate of popliteal artery measured by flow-mediated dilation (FMD). Doppler ultrasound will be used to determine popliteal artery vascular function. Specifically, this assessment will include the measurement of flow rate and artery diameter at rest and in response to flow mediated dilation.
Time frame: Baseline, during reduced activity (2 weeks) and 2 weeks post reduced activity (4 weeks)
Leg Microvascular Function
Flow rate of leg microvasculature assessed by passive leg movement (PLM). Doppler ultrasound will be used to determine leg microvasculature function. Specifically, this assessment will include the measurement of flow rate at rest and in response to movement.
Time frame: Baseline, during reduced activity (2 weeks) and 2 weeks post reduced activity (4 weeks)
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