Implantable Emg System

An implantable EMG system is a biomedical device that records electrical activity generated by skeletal muscles from electrodes placed within or near muscle tissue, enabling detailed measurement of neuromuscular function. The electrodes detect motor-unit action potentials, while implanted electronics amplify and filter these signals before storing or transmitting them for analysis or device control. In neuroscience, implantable EMG systems help researchers study motor-unit recruitment, muscle coordination, and neural control of movement. They also support rehabilitation research and the development of myoelectric prostheses, neuroprosthetic interfaces, and other assistive technologies that translate muscle activity into functional commands.

Implantable Emg System - Related Videos

Research

JoVE Journal - Biology

Extraction of the EPP Component from the Surface EMG

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Cited by 2 •

2009

The endplate potential (EPP) component can be extracted from the surface EMG using a digital filter. The extracted EPP shows oscillation with a frequency of about 30 Hz.

Research

JoVE Journal - Neuroscience
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Recording Forelimb Muscle Activity in Head-Fixed Mice with Chronically Implanted EMG Electrodes

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Cited by 2 •

2024

This protocol describes the hand fabrication and surgical implantation of electromyographic (EMG) electrodes in the forelimb muscles of mice to record muscle activity during head-fixed behavior experiments.

Research

JoVE Journal - Behavior
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Simultaneous Scalp Electroencephalography (EEG), Electromyography (EMG), and Whole-body Segmental Inertial Recording for Multi-modal Neural Decoding

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Cited by 28 •

2013

Development of an effective brain-machine-interface (BMI) system for restoration and rehabilitation of bipedal locomotion requires accurate decoding of user's intent. Here we present a novel experimental protocol and data collection technique for simultaneous non-invasive acquisition of neural activity, muscle activity, and whole-body kinematics during various locomotion tasks and conditions.

Functional Near Infrared Spectroscopy of the Sensory and Motor Brain Regions with Simultaneous Kinematic and EMG Monitoring During Motor Tasks

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Cited by 16 •

2014

Monitoring brain activity during upright motor tasks is of great value when investigating the neural source of movement disorders. Here, we demonstrate a protocol that combines functional near infrared spectroscopy with continuous monitoring of muscle and kinematic activity during 4 types of motor tasks.

Microbead Implantation in the Zebrafish Embryo

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Cited by 8 •

2015

The zebrafish is an excellent model system for genetic and developmental studies. Bead implantation is a valuable tissue manipulation technique that can be used to interrogate developmental mechanisms by introducing alterations in local cellular environments. This protocol describes how to perform microbead implantation in the zebrafish embryo.

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