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利用听觉稳态反应勾勒耳鸣大脑中的功能连接。

Using auditory steady state responses to outline the functional connectivity in the tinnitus brain.

作者信息

Schlee Winfried, Weisz Nathan, Bertrand Olivier, Hartmann Thomas, Elbert Thomas

机构信息

Department of Psychology, University of Konstanz, Konstanz, Germany.

出版信息

PLoS One. 2008;3(11):e3720. doi: 10.1371/journal.pone.0003720. Epub 2008 Nov 13.

Abstract

BACKGROUND

Tinnitus is an auditory phantom perception that is most likely generated in the central nervous system. Most of the tinnitus research has concentrated on the auditory system. However, it was suggested recently that also non-auditory structures are involved in a global network that encodes subjective tinnitus. We tested this assumption using auditory steady state responses to entrain the tinnitus network and investigated long-range functional connectivity across various non-auditory brain regions.

METHODS AND FINDINGS

Using whole-head magnetoencephalography we investigated cortical connectivity by means of phase synchronization in tinnitus subjects and healthy controls. We found evidence for a deviating pattern of long-range functional connectivity in tinnitus that was strongly correlated with individual ratings of the tinnitus percept. Phase couplings between the anterior cingulum and the right frontal lobe and phase couplings between the anterior cingulum and the right parietal lobe showed significant condition x group interactions and were correlated with the individual tinnitus distress ratings only in the tinnitus condition and not in the control conditions.

CONCLUSIONS

To the best of our knowledge this is the first study that demonstrates existence of a global tinnitus network of long-range cortical connections outside the central auditory system. This result extends the current knowledge of how tinnitus is generated in the brain. We propose that this global extend of the tinnitus network is crucial for the continuos perception of the tinnitus tone and a therapeutical intervention that is able to change this network should result in relief of tinnitus.

摘要

背景

耳鸣是一种听觉幻觉,很可能在中枢神经系统中产生。大多数耳鸣研究都集中在听觉系统。然而,最近有研究表明,非听觉结构也参与了一个编码主观性耳鸣的全局网络。我们使用听觉稳态反应来训练耳鸣网络,并研究了不同非听觉脑区之间的远程功能连接,以此来验证这一假设。

方法与结果

我们使用全头磁脑图,通过相位同步研究了耳鸣患者和健康对照者的皮质连接性。我们发现耳鸣患者存在一种与耳鸣感知的个体评分密切相关的异常远程功能连接模式。前扣带回与右额叶之间的相位耦合以及前扣带回与右顶叶之间的相位耦合显示出显著的条件×组交互作用,并且仅在耳鸣状态下与个体耳鸣困扰评分相关,而在对照状态下则不然。

结论

据我们所知,这是第一项证明在中枢听觉系统之外存在一个由远程皮质连接组成的全局耳鸣网络的研究。这一结果扩展了我们目前对大脑中耳鸣产生机制的认识。我们认为,耳鸣网络的这种全局扩展对于耳鸣音调的持续感知至关重要,能够改变这个网络的治疗干预应该可以缓解耳鸣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c28/2579484/cb28355baf91/pone.0003720.g001.jpg

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