9780471675808-0471675806-Electromyography: Physiology, Engineering, and Non-Invasive Applications

Electromyography: Physiology, Engineering, and Non-Invasive Applications

ISBN-13: 9780471675808
ISBN-10: 0471675806
Edition: 1
Author: Philip J. Parker, Roberto Merletti
Publication date: 2004
Publisher: Wiley-IEEE Press
Format: Hardcover 494 pages
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Book details

ISBN-13: 9780471675808
ISBN-10: 0471675806
Edition: 1
Author: Philip J. Parker, Roberto Merletti
Publication date: 2004
Publisher: Wiley-IEEE Press
Format: Hardcover 494 pages

Summary

Electromyography: Physiology, Engineering, and Non-Invasive Applications (ISBN-13: 9780471675808 and ISBN-10: 0471675806), written by authors Philip J. Parker, Roberto Merletti, was published by Wiley-IEEE Press in 2004. With an overall rating of 4.3 stars, it's a notable title among other Computer Modelling (Engineering) books. You can easily purchase or rent Electromyography: Physiology, Engineering, and Non-Invasive Applications (Hardcover) from BooksRun, along with many other new and used Computer Modelling books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

A complete overview of electromyography with contributions from pacesetters in the field

In recent years, insights from the field of engineering have illuminated the vast potential of electromyography (EMG) in biomedical technology. Featuring contributions from key innovators working in the field today, Electromyography reveals the broad applications of EMG data in areas as diverse as neurology, ergonomics, exercise physiology, rehabilitation, movement analysis, biofeedback, and myoelectric control of prosthesis.

Bridging the gap between engineering and physiology, this pioneering volume explains the essential concepts needed to detect, understand, process, and interpret EMG signals using non-invasive electrodes. Electromyography shows how engineering tools such as models and signal processing methods can greatly augment the insight provided by surface EMG signals.

Topics covered include:

  • Basic physiology and biophysics of EMG generation
  • Needle and surface electrode detection techniques
  • Signal conditioning and processing issues
  • Single- and multi-channel techniques for information extraction
  • Development and application of physical models
  • Advanced signal processing techniques
With its fresh engineering perspective, Electromyography offers physiologists, medical professionals, and students in biomedical engineering a new window into the far-reaching possibilities of this dynamic technology.
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