Surface Emg Biofeedback

Surface EMG biofeedback is a noninvasive method that measures electrical activity from skeletal muscles through electrodes placed on the skin and converts it into visual or auditory feedback. As a person contracts or relaxes a targeted muscle, the system amplifies and displays changes in the myoelectric signal, allowing voluntary control and adjustment of muscle recruitment. In medicine, clinicians use this approach during rehabilitation to improve activation of weak muscles, reduce excessive or inappropriate activity, and support motor relearning after injury or neurological disease. It can also help assess treatment progress and provide patients with immediate information for practicing more effective movement.

Surface Emg Biofeedback - 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.

Psychophysiological Stress Assessment Using Biofeedback

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Cited by 9 •

2009

In this video we will describe one method of assessing person's psychophysiological reaction to stress using biofeedback. We will also present general guidelines for treatment planning.

Real-time fMRI Biofeedback Targeting the Orbitofrontal Cortex for Contamination Anxiety

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Cited by 32 •

2012

Here we present a method for training people to control a brain area involved in contamination anxiety and for probing the relationship between contamination anxiety and brain connectivity patterns.

Research

JoVE Journal - Biology
Free Sample

The use of Biofeedback in Clinical Virtual Reality: The INTREPID Project

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Cited by 48 •

2009

The Project on Virtual Reality Intelligent Multi-sensor System for the Treatment of Anxiety-related Disorders (INTREPID) is aimed at developing a multi-sensor context-aware virtual reality system for the treatment of anxiety-related disorders.

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.

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