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Connectivity graph analysis of the auditory resting state network in tinnitus

机译:耳鸣听觉静止状态网络的连通图分析

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Thirteen chronic tinnitus patients and fifteen age-matched healthy controls were studied on a 3 T magnetic resonance imaging (MRI) scanner during resting condition (i.e. eyes closed, no task performance). The auditory resting-state component was selected using an automatic component selection approach. Functional connectivity (correlations/anti-correlations) in the extracted network was portrayed by integrating the independent component analysis (ICA) approach with a graph theory method. Tinnitus and control groups showed different graph connectivity patterns. In the control group, the connectivity graph was divided into two distinct anti-correlated networks. The first one encompassed the auditory cortices and the insula. The second one encompassed frontoparietal and anterior cingulate cortices, brainstem, amygdala, basal gangliaucleus accumbens and parahippocampal regions. In the tinnitus group, only one of the two previously described networks was observed, encompassing the auditory cortices and the insula. Direct group comparison showed, in the tinnitus group, an increased functional connectivity between auditory cortices and the left parahippocampal region surviving multiple comparisons. We investigated a possible correlation between four tinnitus relevant measures (tinnitus handicap inventory (THI) and tinnitus questionnaire (TQ) scores, tinnitus duration and tinnitus intensity during the scanning session) and the connectivity pattern in the tinnitus population. We observed a significant positive correlation between the beta values of the posterior cingulate/precuneus region and the THI score. Our results show a modified functional connectivity pattern in tinnitus sufferers and highlight the role of the parahippocampal region in tinnitus physiopathology. They also point out the importance of the activity and connectivity pattern of the posterior cingulate cortex/precuneus region to the development of the tinnitus associated distress. This article is part of a Special Issue entitled: Tinnitus Neuroscience.
机译:在3T磁共振成像(MRI)扫描仪的静止状态下(即闭眼,无任务表现)研究了13位慢性耳鸣患者和15位年龄相匹配的健康对照者。使用自动成分选择方法选择听觉静止状态成分。通过将独立成分分析(ICA)方法与图论方法相集成,描绘了提取网络中的功能连通性(相关性/反相关性)。耳鸣和对照组显示不同的图形连接模式。在对照组中,连通性图分为两个不同的反相关网络。第一个包括听觉皮层和岛突。第二个包括额前额叶和前扣带回皮层,脑干,杏仁核,基底神经节/伏隔核和海马旁区域。在耳鸣组中,仅观察到两个上述网络中的一个,包括听觉皮层和岛状。直接组比较显示,在耳鸣组中,经过多次比较后,听觉皮层和左海马旁区域之间的功能连接性增加。我们调查了耳鸣人群中四种与耳鸣有关的测量指标(耳鸣残障量表(THI)和耳鸣问卷(TQ)得分,耳鸣持续时间和耳鸣强度)之间的可能相关性。我们观察到扣带后部/胎前区的β值与THI评分之间存在显着的正相关。我们的研究结果表明,耳鸣患者的功能连接模式发生了改变,并突显了海马旁区域在耳鸣生理病理中的作用。他们还指出了后扣带回皮层/早神经区域的活动和连通性模式对耳鸣相关窘迫发展的重要性。本文是名为“耳鸣神经科学”的特刊的一部分。

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