Computer-Aided Tinnitus Detection based on Brain Network Analysis of EEG Functional Connectivity

Publish Year: 1398
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_JBPE-9-6_013

تاریخ نمایه سازی: 30 دی 1402

Abstract:

Background: Tinnitus known as a central nervous system disorder is correlated with specific oscillatory activities within auditory and non-auditory brain areas. Several studies in the past few years have revealed that in the most tinnitus cases, the response pattern of neurons in auditory system is changed due to auditory deafferentation, which leads to variation and disruption of the brain networks. Objective: In this paper, we introduce an approach to automatically distinguish tinnitus individuals from healthy controls based on whole-brain functional connectivity and network analysis. Material and Methods: The functional connectivity analysis was applied to the resting state electroencephalographic (EEG) data of both groups using Weighted Phase Lag Index (WPLI) for various frequency bands in ۲-۴۴ Hz frequency range. In this case- control study, the classification was performed on graph theoretical measures using support vector machine (SVM) as a robust classification method. Results: Experimental results showed promising classification performance with a high accuracy, sensitivity, and specificity in all frequency bands, specifically in the beta۲ frequency band. Conclusion: The current study provides substantial evidence that tinnitus network can be successfully detected by consistent measures of the brain networks based on EEG functional connectivity.

Authors

F Mohagheghian

PhD, Department of Medical Physics and Biomedical engineering, School of Medicine, Shahid Beheshti University of Medical Sciences (SBMU), Tehran, Iran

B Makkiabadi

PhD, Department of Medical Physics and Biomedical engineering, School of Medicine, Tehran University of Medical Sciences (TUMS), Tehran, Iran

H Jalilvand

PhD, Department of Audiology, School of Rehabilitation, Shahid Beheshti University of Medical Sciences (SBMU), Tehran, Iran

H Khajehpoor

MSc, Department of Medical Physics and Biomedical engineering, School of Medicine, Tehran University of Medical Sciences (TUMS), Tehran, Iran

N Samadzadehaghdam

MSc, Department of Medical Physics and Biomedical engineering, School of Medicine, Tehran University of Medical Sciences (TUMS), Tehran, Iran

E Eqlimi

MSc, Department of Medical Physics and Biomedical engineering, School of Medicine, Tehran University of Medical Sciences (TUMS), Tehran, Iran

M R Deevband

PhD, Department of Medical Physics and Biomedical engineering, School of Medicine, Shahid Beheshti University of Medical Sciences (SBMU), Tehran, Iran

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  • Eggermont JJ. Central tinnitus. Auris Nasus Larynx. ۲۰۰۳;۳۰:۷-۱۲ ...
  • Snow JB. Tinnitus: theory and management: PMPH-USA; ۲۰۰۴ ...
  • Møller AR, Langguth B, De Ridder D, Kleinjung T. Textbook ...
  • Meyerhoff W, Cooper J. Tinnitus. Otolaryngology. ۱۹۹۱;۲:۱۱۶۹-۷۹ ...
  • Phoon WH, Lee HS, Chia SE. Tinnitus in noise-exposed workers. ...
  • Eggermont JJ, Roberts LE. The neuroscience of tinnitus. Trends Neurosci. ...
  • Norena A, Micheyl C, Chery-Croze S, Collet L. Psychoacoustic characterization ...
  • Elgoyhen AB, Langguth B, De Ridder D, Vanneste S. Tinnitus: ...
  • Mohan A, De Ridder D, Vanneste S. Graph theoretical analysis ...
  • Vanneste S, De Ridder D. The auditory and non-auditory brain ...
  • Achard S, Salvador R, Whitcher B, Suckling J, Bullmore E. ...
  • Bullmore E, Sporns O. Complex brain networks: graph theoretical analysis ...
  • Buzsaki G, Geisler C, Henze DA, Wang XJ. Interneuron Diversity ...
  • Stam CJ, Reijneveld JC. Graph theoretical analysis of complex networks ...
  • Sporns O, Honey CJ. Small worlds inside big brains. Proc ...
  • Watts DJ, Strogatz SH. Collective dynamics of ‘small-world’ networks. Nature. ...
  • Vertes PE, Alexander-Bloch AF, Gogtay N, Giedd JN, Rapoport JL, ...
  • Stam CJ. Modern network science of neurological disorders. Nat Rev ...
  • Mohan A, De Ridder D, Vanneste S. Graph theoretical analysis ...
  • McCombe A, Baguley D, Coles R, McKenna L, McKinney C, ...
  • Delorme A, Makeig S. EEGLAB: an open source toolbox for ...
  • Oostenveld R, Fries P, Maris E, Schoffelen JM. FieldTrip: Open ...
  • Fraga Gonzalez G, Van der Molen MJW, Zaric G, Bonte ...
  • Hardmeier M, Hatz F, Bousleiman H, Schindler C, Stam CJ, ...
  • Rubinov M, Sporns O. Complex network measures of brain connectivity: ...
  • Vanneste S, Plazier M, Van Der Loo E, Van De ...
  • Vanneste S, Van De Heyning P, De Ridder D. The ...
  • Vinck M, Oostenveld R, Van Wingerden M, Battaglia F, Pennartz ...
  • Cohen MX. Analyzing neural time series data: theory and practice: ...
  • Ewald A, Aristei S, Nolte G, Abdel Rahman R. Brain ...
  • Haufe S, Nikulin VV, Muller KR, Nolte G. A critical ...
  • Vapnik V. The nature of statistical learning theory: Springer science ...
  • Burges CJ. A tutorial on support vector machines for pattern ...
  • Alvar AA, Deevband MR, Ashtiyani M. Neutron spectrum unfolding using ...
  • Taherisadr M, Dehzangi O, Parsaei H. Single Channel EEG Artifact ...
  • Latora V, Marchiori M. Efficient behavior of small-world networks. Phys ...
  • Humphries MD, Gurney K. Network ‘small-world-ness’: a quantitative method for ...
  • Elgoyhen AB, Langguth B, Vanneste S, De Ridder D. Tinnitus: ...
  • Zobay O, Palmer AR, Hall DA, Sereda M, Adjamian P. ...
  • Schlee W, Hartmann T, Langguth B, Weisz N. Abnormal resting-state ...
  • Schlee W, Lorenz I, Hartmann T, Müller N, Schulz H, ...
  • De Ridder D, Vanneste S, Weisz N, Londero A, Schlee ...
  • Vanneste S, Plazier M, Der Loo E, De Heyning PV, ...
  • Weisz N, Moratti S, Meinzer M, Dohrmann K, Elbert T. ...
  • Schlee W. Towards a Global Model of Tinnitus Perception: Multiple ...
  • Chen YC, Feng Y, Xu JJ, Mao CN, Xia W, ...
  • Jastreboff PJ. Phantom auditory perception (tinnitus): mechanisms of generation and ...
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