Muscle Activity Assessment

Muscle Activity Assessment is the measurement and interpretation of muscle activation, force production, and functional performance to understand how muscles operate during movement. It commonly uses electromyography (EMG) to detect electrical signals generated when motor units are recruited, often alongside force, motion, or physiological measurements. In engineering, these data help quantify neuromuscular control, evaluate human-machine interactions, and guide the design of prostheses, orthoses, wearable devices, and ergonomic systems. Assessment results can reveal changes in muscle coordination, workload, or fatigue, supporting biomechanics research, rehabilitation monitoring, and the development of safer, more responsive technologies.

Muscle Activity 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.

Evaluation of Respiratory Muscle Activation Using Respiratory Motor Control Assessment (RMCA) in Individuals with Chronic Spinal Cord Injury

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Cited by 18 •

2013

The purpose of this publication is to present our original work on a multi-muscle surface electromyographic approach to quantitatively characterize respiratory muscle activation patterns in individuals with chronic spinal cord injury using vector-based analysis.

Research

JoVE Journal - Medicine
Free Sample

Non-invasive Assessment of Dorsiflexor Muscle Function in Mice

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Cited by 12 •

2019

Measurement of rodent skeletal muscle contractile function is a useful tool that can be used to track disease progression as well as efficacy of therapeutic intervention. We describe here the non-invasive, in vivo assessment of the dorsiflexor muscles that can be repeated over time in the same mouse.

Setup for the Quantitative Assessment of Motion and Muscle Activity During a Virtual Modified Box and Block Test

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2024

The protocol described here aims to enhance the quantitative evaluation of upper limb deficits, with the goal of developing additional technology for remote assessment both in the clinic and at home. Virtual reality and biosensor technologies are combined with standard clinical techniques to provide insights into the functioning of the neuromuscular system.

In Vivo Functional Assessment of Rat Masseter Muscle Following Surgical Creation of a Volumetric Muscle Loss (VML) Injury

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Cited by 1 •

2024

Volumetric muscle loss (VML) injuries exceed endogenous regenerative ability, resulting in permanent functional deficits. Current VML research primarily focuses on limb and trunk muscles. To extend mechanistic studies of VML to craniofacial muscles, this article describes an in vivo method for longitudinal assessment of masseter muscle function pre- and post-VML injury.

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