Traumatic knee injury is common and highly debilitating. Surgical reconstruction/repair improves knee biomechanics and function, but neuromuscular dysfunction persist for years despite rehabilitation, hindering resumption of normal activities, increasing risk of further injury and, in a majority of patients, hastening the development of knee osteoarthritis (OA). Our goal in this research study is to evaluate the utility of neuromuscular electrical stimulation (NMES), initiated following injury and maintained through the early post-surgical period, to prevent muscle atrophy and intrinsic contractile dysfunction compared to active control intervention of micro-electrical stimulation.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
DOUBLE
Enrollment
25
Neuromuscular electrical stimulation (NMES) will be performed 5 times/week for one hour each day. NMES will start within 1 week of injury and continue till 3 weeks following surgery.
Microstimulation will be performed 5 times/week for one hour each day. Microstimulation will start within 1 week of injury and continue till 3 weeks following surgery.
University of Vermont College of Medicine
Burlington, Vermont, United States
Cross-sectional Area of Skeletal Muscle Fibers (All Fibers)
Cross-sectional area of skeletal muscle fibers will be evaluated using immunohistochemistry, with specification of all relevant muscle fiber types
Time frame: Difference between injured and non-injured leg at 3 weeks post-surgery
Maximal Calcium-activated Tension Single Muscle Fiber Tension (Myosin Heavy Chain (MHC) IIA Fibers)
Tension (force per unit muscle fiber cross-sectional area) from segments of chemically-skinned single human muscle fibers will be assessed under maximal calcium-activated condition, with muscle fiber type determined post-measurement by gel electrophoresis
Time frame: Difference between injured and non-injured leg at 3 weeks post-surgery
Maximal Single Muscle Fiber Shortening Velocity (Myosin Heavy Chain (MHC) IIA Fibers)
Maximal shortening velocity from segments of chemically-skinned single human muscle fibers will be assessed, with muscle fiber type determined post-measurement by gel electrophoresis
Time frame: Difference between injured and non-injured leg at 3 weeks post-surgery
Cross-sectional Area of Skeletal Muscle Fibers (Myosin Heavy Chain (MHC) I Fibers)
Cross-sectional area of skeletal muscle fibers will be evaluated using immunohistochemistry, with specification of all relevant muscle fiber types
Time frame: Difference between injured and non-injured leg at 3 weeks post-surgery
Cross-sectional Area of Skeletal Muscle Fibers (MHC IIA)
Cross-sectional area of skeletal muscle fibers will be evaluated using immunohistochemistry, with specification of all relevant muscle fiber types
Time frame: Difference between injured and non-injured leg at 3 weeks post-surgery
Knee Extensor Peak Isokinetic Torque
Peak isokinetic torque is measures in injured and non-injurd leg at 60 deg/s using dynamometry
Time frame: Difference between injured and non-injured leg at 6 months post-surgery
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.