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Non-Invasive Brain Stimulation and Modulation of Auditory Processing

Basic Principles and Clinical Application

  • 1st Edition - February 11, 2027
  • Latest edition
  • Author: Jos J. Eggermont
  • Language: English

Non-invasive Brain Stimulation and Modulation of Auditory Processing: Basic Principles and Clinical Application provides a comprehensive overview of innovative techniques design… Read more

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Description

Non-invasive Brain Stimulation and Modulation of Auditory Processing: Basic Principles and Clinical Application provides a comprehensive overview of innovative techniques designed to address auditory processing disorders while highlighting their underlying mechanisms and clinical applications. This book addresses the distinction between hearing loss and hearing impairment, emphasizing the need for interventions that target the brain's neural processes. With a focus on both transcranial and transcutaneous stimulation methods, including transcranial magnetic stimulation (TMS) and transcutaneous electrical stimulation (TES), it explores their effects on auditory functions, cognitive processes, and long-term conditions such as tinnitus and developmental disorders. Each chapter investigates the biophysical mechanisms, therapeutic applications, and potential limitations of these non-invasive techniques, while also discussing their role in enhancing auditory attention, speech processing, and cognitive function in aging populations. By integrating neuroimaging techniques and addressing the importance of brain state, this book serves as an essential resource for researchers and clinicians seeking to understand and apply non-invasive brain stimulation methods to improve auditory processing and overall cognitive health.

Key features

  • Provides a comprehensive overview of non-invasive brain stimulation techniques, including transcranial magnetic stimulation (TMS) and transcutaneous electrical stimulation (TES), and their applications in auditory processing
  • Integrates neuroimaging techniques to assess the connectivity of brain areas involved in auditory and cognitive processing
  • Discusses the role of brain state and plasticity in modulating auditory perception and treatment outcomes, particularly in developmental and age-related disorders
  • Offers practical insights and clinical applications for researchers and clinicians aiming to improve auditory processing and cognitive health through non-invasive techniques

Readership

Auditory neuroscientists, Audiologists, Tinnitus researchers and practitioners, Speech therapists, Pediatric neurologists, Clinical psychologists

Table of contents

1. Neuroplasticity of the Auditory System

2. Noise exposure and hearing loss induced neural plasticity

3. Non-invasive brain stimulation as a tool to assess functionality and plasticity in human brains

4. Mechanisms and non-local effects of transcranial magnetic stimulation

5. Mechanisms and application of transcranial electrical stimulation.

6. Mechanisms of transcranial ultrasound stimulation

7. Assessing the healthy auditory system with transcranial stimulation

8. Transcranial stimulation in speech and language processing and auditory-motor integration

9. Application of transcranial and transcutaneous stimulation to tinnitus assessment and therapy

10. Application of transcranial stimulation to auditory-related cognitive developmental disorders.

11. Application of transcranial stimulation to aging and dementia

12. Non-invasive brain stimulation and modulation. State-dependency, focality, and potential for therapy in auditory-related disorders

Product details

  • Edition: 1
  • Latest edition
  • Published: February 11, 2027
  • Language: English

About the author

JE

Jos J. Eggermont

Dr. Jos J. Eggermont is an Emeritus Professor in the Departments of Physiology and Pharmacology, and Psychology at the University of Calgary in Alberta, Canada. Dr. Eggermont is one of the most renowned scientists in the field of the auditory system and his work has contributed substantially to the current knowledge about hearing loss. His research comprises most aspects of audition with an emphasis on the electrophysiology of the auditory system in experimental animals. He has published over 225 scientific articles, authored/edited 10 books, and contributed to over 100 book chapters all focusing on the auditory system.
Affiliations and expertise
Emeritus Professor, Departments of Physiology and Pharmacology, and Psychology, University of Calgary, Calgary, AB, Canada