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首页> 外文期刊>Nature reviews. Neurology >Maladaptive plasticity in tinnitus - triggers, mechanisms and treatment
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Maladaptive plasticity in tinnitus - triggers, mechanisms and treatment

机译:耳鸣的适应性不良-触发因素,机制和治疗

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Tinnitus is a phantom auditory sensation that reduces quality of life for millions of people worldwide, and for which there is no medical cure. Most cases of tinnitus are associated with hearing loss caused by ageing or noise exposure. Exposure to loud recreational sound is common among the young, and this group are at increasing risk of developing tinnitus. Head or neck injuries can also trigger the development of tinnitus, as altered somatosensory input can affect auditory pathways and lead to tinnitus or modulate its intensity. Emotional and attentional state could be involved in the development and maintenance of tinnitus via top-down mechanisms. Thus, military personnel in combat are particularly at risk owing to combined risk factors (hearing loss, somatosensory system disturbances and emotional stress). Animal model studies have identified tinnitus-associated neural changes that commence at the cochlear nucleus and extend to the auditory cortex and other brain regions. Maladaptive neural plasticity seems to underlie these changes: it results in increased spontaneous firing rates and synchrony among neurons in central auditory structures, possibly generating the phantom percept. This Review highlights the links between animal and human studies, and discusses several therapeutic approaches that have been developed to target the neuroplastic changes underlying tinnitus.
机译:耳鸣是一种幻影听觉,会降低全世界数百万人的生活质量,并且没有药物可治愈。大多数耳鸣病例都与衰老或暴露于噪音引起的听力下降有关。在年轻人中,经常听到大声的娱乐声音,这群人患耳鸣的风险增加。头部或颈部受伤也可能触发耳鸣的发展,因为体感输入的改变会影响听觉通路并导致耳鸣或调节其强度。情绪和注意力状态可以通过自上而下的机制参与耳鸣的发展和维持。因此,由于综合的危险因素(听力损失,身体感觉系统障碍和情绪紧张),战斗中的军事人员尤其面临危险。动物模型研究确定了与耳鸣相关的神经变化,该变化始于耳蜗核,并延伸到听觉皮层和其他大脑区域。适应性不良的神经可塑性似乎是这些变化的基础:它导致中枢听觉结构中神经元的自发放电频率和同步性增加,从而可能产生幻觉。这篇综述强调了动物与人类研究之间的联系,并讨论了针对耳鸣的神经塑性变化而开发的几种治疗方法。

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