The purpose of this study is (1) to determine whether a 3-month exercise rehabilitation program will improve claudication distances, free-living daily physical activity, and health-related quality of life of older, revascularized patients with peripheral arterial disease, and (2) to determine whether the primary mechanisms by which exercise rehabilitation affects the above functional outcomes are through alterations in walking efficiency, peripheral circulation, and cardiopulmonary function.
Peripheral arterial disease (PAD) patients with critical limb-threatening ischemia have improved peripheral circulation following infrainguinal revascularization. Despite this hemodynamic benefit, little change in functional status occurs, and many patients have residual ambulatory dysfunction. The lack of functional improvement in revascularized patients may be due to extreme physical deconditioning secondary to their pre-existing critical limb-threatening ischemia. Therefore, we hypothesize that a program of aerobic exercise training is necessary to optimize ambulation, free-living daily physical activity, and health-related quality of life through the mechanisms of improved walking economy, peripheral circulation, and cardiopulmonary function. This is a prospective, randomized controlled clinical trial comparing an exercise group undergoing a program of graded treadmill walking, and a non-exercise control group. Eighty PAD patients will be randomized into either the exercise group (N = 40) or the non-exercise control group (N = 40) following successful lower extremity arterial bypass or angioplasty. The 3-month exercise program will consist of graded treadmill walking 3 times per week with progressive increments in exercise duration from 15 to 40 minutes, and progressive increments in exercise intensity from 50 to 80% of exercise capacity.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
Graded treadmill walking 3 times per week for 3 months
General Clinical Research Center, University of Oklahoma Health Sciences Center
Oklahoma City, Oklahoma, United States
Change in the walking distance to onset of leg pain, and the change in walking distance to maximal leg pain
Changes in walking efficiency, calf muscle circulation, and cardiopulmonary function.
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