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Functional brain changes in auditory phantom perception evoked by different stimulus frequencies

机译:不同刺激频率引起的听觉幻影感知的功能性脑变化

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摘要

Bayesian models of brain function such as active inference and predictive coding offer a general theoretical framework with which to explain several aspects of normal and disordered brain function. Of particular interest to the present study is the potential for such models to explain the pathology of auditory phantom perception, i.e. tinnitus. To test this framework empirically, we perform an fMRI experiment on a large clinical sample (n?=?75) of the human chronic tinnitus population. The experiment features a within-subject design based on two experimental conditions: subjects were presented with sound stimuli matched to their tinnitus frequency (TF) as well as similar stimuli presented at a control frequency (CF). The responses elicited by these stimuli, as measured using both activity and functional connectivity, were then analyzed both within and between conditions. Given the Bayesian-brain framework, we hypothesize that TF stimuli will elicit greater activity and/or functional connectivity in areas related to the cognitive and emotional aspects of tinnitus, i.e. tinnitus-related distress. We conversely hypothesize that CF stimuli will elicit greater activity/connectivity in areas related to auditory perception and attention. We discuss our results in the context of this framework and suggest future directions for empirical testing.
机译:贝叶斯型脑功能模型,如有源推断和预测编码,提供了一般理论框架,用于解释正常和无序的脑功能的几个方面。本研究特别感兴趣是这种模型来解释听觉幻影感知的病理学,即耳鸣。为了经验测试这一框架,我们在人类慢性耳鸣群的大型临床样本(N?=α75)上进行FMRI实验。该实验特征在基于两个实验条件的对象内设计中,呈现对受试者与其耳鸣频率(TF)的声音刺激以及在控制频率(CF)上呈现的类似刺激。然后在条件下和在条件下进行这些刺激引起的刺激引发的反应。鉴于贝叶斯大脑框架,我们假设TF刺激将引起与耳鸣的认知和情感方面有关的地区的更大的活动和/或功能连通性,即耳鸣相关的痛苦。我们相反地假设CF刺激将在与听觉感知和关注有关的区域中引出更大的活动/连接。我们在本框架的背景下讨论我们的结果,并建议未来的实证测试方向。

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