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Deafferentation-based pathophysiological differences in phantom sound: Tinnitus with and without hearing loss

机译:幻像声中基于去聋力的病理生理差异:耳鸣伴或不伴耳聋

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Tinnitus has been considered an auditory phantom percept. Recently a theoretical multiphase compensation mechanism at a cortical level has been hypothesized linking auditory deafferentation to tinnitus. This Bayesian brain model predicts that two very different kinds of tinnitus should exist, depending on the amount of hearing loss: an auditory cortex related form of tinnitus not associated with hearing loss, and a (para) hippocampal form associated with hearing loss, in which the auditory cortex might be of little relevance. In order to verify this model, resting state source analyzed EEG recordings were made in 129 tinnitus patients, and correlated to the mean hearing loss, the range of the hearing loss and the hearing loss at the tinnitus frequency. Results demonstrate that tinnitus can be linked to 2 very different mechanisms. In patients with little or no hearing loss, the tinnitus seems to be more related to auditory cortex activity, but not to (para) hippocampal memory related activity, whereas in tinnitus patients with more severe hearing loss, tinnitus seems to be related to (para) hippocampal mechanisms. Furthermore hearing loss seems to drive the communication between the auditory cortex and the parahippocampus, as measured by functional and effective connectivity. (C) 2015 Elsevier Inc. All rights reserved.
机译:耳鸣被认为是听觉幻觉。最近,有人假设在皮层水平上有一种理论上的多相补偿机制,可以将听觉脱除耳聋与耳鸣联系起来。这种贝叶斯脑模型预测,根据听力损失的数量,应该存在两种截然不同的耳鸣:与听觉皮层相关的耳鸣与听力损失无关,以及(副)海马体形式与听力损失有关,其中听觉皮层可能无关紧要。为了验证该模型,对129名耳鸣患者进行了静息源分析的EEG记录,并将其与平均听力损失,听力损失范围和耳鸣频率的听力损失相关。结果表明,耳鸣可能与两种不同的机制有关。在听力损失很少或没有听力损失的患者中,耳鸣似乎与听觉皮层活动更多相关,而与海马记忆相关的活动无关。而在听力损失较严重的耳鸣患者中,耳鸣似乎与(听力障碍)相关。 )海马机制。此外,根据功能和有效的连接性,听力损失似乎会驱动听觉皮层与海马旁的沟通。 (C)2015 Elsevier Inc.保留所有权利。

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