Muscle Power Assessment

Muscle Power Assessment is the measurement of how rapidly a muscle or muscle group generates mechanical power, an important indicator of functional performance, strength, and neuromuscular capacity. It typically combines force or torque with movement velocity, using tools such as dynamometers, force plates, or instrumented exercise systems to quantify power during controlled contractions or tasks. In bioengineering, these measurements support the evaluation of movement, prosthetic and orthotic devices, rehabilitation progress, athletic performance, and muscle impairment. Standardized power assessments can also help researchers compare interventions, characterize human-machine interactions, and design technologies that restore or enhance physical function.

Muscle Power Assessment - Related Videos

Research

JoVE Journal - Biology

Ex Vivo Assessment of Contractility, Fatigability and Alternans in Isolated Skeletal Muscles

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Cited by 53 •

2012

We describe a method to directly measure muscle force, muscle power, contractile kinetics and fatigability of isolated skeletal muscles in an in vitro system using field stimulation. Valuable information on Ca2+ handling properties and contractile machinery of the muscle can be obtained using different stimulating protocols.

Improving Strength, Power, Muscle Aerobic Capacity, and Glucose Tolerance through Short-term Progressive Strength Training Among Elderly People

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Cited by 6 •

2017

The effect of short-term resistance training on elderly people was investigated through the simultaneous use of several methods. Compared to a control group, many improvements were seen, including on muscle aerobic capacity, glucose tolerance, strength, power, and muscle quality (i.e., protein involved in cell signaling and muscle fiber type composition).

Induction and Assessment of Exertional Skeletal Muscle Damage in Humans

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Cited by 8 •

2016

This article describes a safe and reliable method to induce and quantify exertional skeletal muscle damage in human subjects.

Research

JoVE Journal - Bioengineering
Free Sample

Construction of Constant-Load (Isotonic) and Constant-Velocity (Isokinetic) Torque-Velocity-Power Profiles In vivo for the Rat Plantar Flexors

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2025

Here, we present a novel protocol to non-invasively measure the torque-angular velocity-power relationship in vivo in rat plantar flexors using transcutaneous muscle stimulation. This setup enables simple testing of isotonic muscle contractions on a force transducer/length controller system to better represent the constant-load nature of everyday movements.

Assessing Muscle Contraction with Neuromuscular Blocker Treatment

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2025

This video demonstrates assessing the muscle using cultured motor neurons, Schwann cells, and myotubes, followed by treatment with a neuromuscular blocker to inhibit contraction. Color-coded time-motion graphics show a color-coded time-motion graphic. Red indicates the fastest movement, and blue indicates the slowest.

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