• DocumentCode
    1833222
  • Title

    The Role of Attention in the Tinnitus Decompensation: Reinforcement of a Large-Scale Neural Decompensation Measure

  • Author

    Yin Fen Low ; Trenado, C. ; Delb, W. ; Corona-Strauss, Farah I. ; Strauss, D.J.

  • Author_Institution
    Saarland Univ. & Saarland Univ. of Appl. Sci., Saarbrucken
  • fYear
    2007
  • fDate
    22-26 Aug. 2007
  • Firstpage
    2485
  • Lastpage
    2488
  • Abstract
    Large-scale neural correlates of the tinnitus decompensation have been identified by using wavelet phase stability criteria of single sweep sequences of auditory late responses (ALRs). The suggested measure provided an objective quantification of the tinnitus decompensation and allowed for a reliable discrimination between a group of compensated and decompensated tinnitus patients. By interpreting our results with an oscillatory tinnitus model, our synchronization stability measure of ALRs can be linked to the focus of attention on the tinnitus signal. In the following study, we examined in detail the correlates of this attentional mechanism in healthy subjects. The results support our previous findings of the phase synchronization stability measure that reflected neural correlates of the fixation of attention to the tinnitus signal. In this case, enabling the differentiation between the attended and unattended conditions. It is concluded that the wavelet phase synchronization stability of ALRs single sweeps can be used as objective tinnitus decompensation measure and can be interpreted in the framework of the Jastreboff tinnitus model and adaptive resonance theory. Our studies confirm that the synchronization stability in ALR sequences is linked to attention. This measure is not only able to serve as objective quantification of the tinnitus decompensation, but also can be applied in all online and real time neurofeedback therapeutic approach where a direct stimulus locked attention monitoring is compulsory as if it based on a single sweeps processing.
  • Keywords
    adaptive resonance theory; biomedical measurement; hearing; neurophysiology; synchronisation; Jastreboff tinnitus model; adaptive resonance theory; auditory late responses; large-scale neural decompensation measure; neurofeedback therapeutic approach; objective quantification; single sweeps processing; sound perception; tinnitus decompensation; wavelet phase stability criteria; wavelet phase synchronization stability; Acoustic noise; Deafness; Ear; Frequency synchronization; Large-scale systems; Neurofeedback; Phase measurement; Resonance; Stability criteria; Working environment noise; Attention; Auditory Perception; Awareness; Equipment Design; Humans; Models, Biological; Models, Statistical; Models, Theoretical; Nerve Net; Nervous System; Neurons; Oscillometry; Research Design; Time Factors; Tinnitus;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society, 2007. EMBS 2007. 29th Annual International Conference of the IEEE
  • Conference_Location
    Lyon
  • ISSN
    1557-170X
  • Print_ISBN
    978-1-4244-0787-3
  • Type

    conf

  • DOI
    10.1109/IEMBS.2007.4352832
  • Filename
    4352832