Prolonged sedentary conditions contribute to declining health across human populations and cause significant secondary health consequences for many patients whose illnesses or injuries prevent them from exercising. The investigators have demonstrated that in a small animal fruit fly model, genetic stimulation of neurons that promote adrenergic signaling is sufficient to mimic the benefits of exercise training even in sedentary animals. The investigator's pilot work in humans has confirmed that humans respond to Virtual Reality (VR) stimuli that mimic exercise by increasing heart rate and altering heart rate variability in a way consistent with increased adrenergic activity. In this study, the investigators will directly test for the first time whether repeated, controlled exposure to VR stimuli that induce adrenergic activity in sedentary humans can produce adaptive changes to protein expression and endurance performance like those produced by actual exercise in pre-diabetic participants with/without hypertension.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
48
20 minutes cycling exercise
20 minutes virtual cycling
Wayne State University
Detroit, Michigan, United States
RECRUITINGBlood Glucose, HbA1C
Pre-diabetic patients (Blood glucose 100-125 mg/dL, AbA1C 5.7-6.4%) may see improvement in values post-intervention
Time frame: 10 weeks
10 minute walk time
distance walked in 10 minutes is recorded pre- and post- intervention and may improve
Time frame: 10 weeks
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