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Tinnitus distress is linked to enhanced resting‐state functional connectivity from the limbic system to the auditory cortex

机译:耳鸣困扰与从边缘系统到听觉皮层的增强的静息状态功能连接有关

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摘要

The phantom sound of tinnitus is believed to be triggered by aberrant neural activity in the central auditory pathway, but since this debilitating condition is often associated with emotional distress and anxiety, these comorbidities likely arise from maladaptive functional connections to limbic structures such as the amygdala and hippocampus. To test this hypothesis, resting‐state functional magnetic resonance imaging (fMRI) was used to identify aberrant effective connectivity of the amygdala and hippocampus in tinnitus patients and to determine the relationship with tinnitus characteristics. Chronic tinnitus patients (  = 26) and age‐, sex‐, and education‐matched healthy controls (  = 23) were included. Both groups were comparable for hearing level. Granger causality analysis utilizing the amygdala and hippocampus as seed regions were used to investigate the directional connectivity and the relationship with tinnitus duration or distress. Relative to healthy controls, tinnitus patients demonstrated abnormal directional connectivity of the amygdala and hippocampus, including primary and association auditory cortex, and other non‐auditory areas. Importantly, scores on the Tinnitus Handicap Questionnaires were positively correlated with increased connectivity from the left amygdala to left superior temporal gyrus (  = 0.570,  = 0.005), and from the right amygdala to right superior temporal gyrus (  = 0.487,  = 0.018). Moreover, enhanced effective connectivity from the right hippocampus to left transverse temporal gyrus was correlated with tinnitus duration (  = 0.452,  = 0.030). The results showed that tinnitus distress strongly correlates with enhanced effective connectivity that is directed from the amygdala to the auditory cortex. The longer the phantom sensation, the more likely acute tinnitus becomes permanently encoded by memory traces in the hippocampus. . ©
机译:耳鸣的幻象声被认为是由中枢听觉通路中异常的神经活动触发的,但由于这种使人衰弱的状况通常与情绪困扰和焦虑有关,因此,这些合并症可能是由于与边缘结构(如杏仁核和海马。为了验证这一假设,静息状态功能磁共振成像(fMRI)用于确定耳鸣患者杏仁核和海马体的异常有效连接,并确定与耳鸣特征的关系。纳入了慢性耳鸣患者(= 26)和年龄,性别和教育程度相匹配的健康对照(= 23)。两组的听力水平均相当。利用杏仁核和海马体作为种子区域的格兰杰因果关系分析用于研究方向连通性以及与耳鸣持续时间或困扰的关系。相对于健康对照,耳鸣患者表现出杏仁核和海马体的方向性连接异常,包括主要和联想听觉皮层以及其他非听觉区域。重要的是,耳鸣障碍问卷的得分与左杏仁核到左颞上回(connectivity = 0.570,= 0.005)以及从右杏仁核到右颞上回(connectivity = 0.487,= 0.018)的连通性正相关。此外,从右海马体到左颞颞回的有效连通性增强与耳鸣持续时间相关(= 0.452,= 0.030)。结果表明,耳鸣困扰与从杏仁核到听觉皮层的增强的有效连通性密切相关。幻影感越长,海马中的记忆痕迹就越可能使永久性耳鸣永久编码。 。 ©

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