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Blast-induced tinnitus: A combined behavioral, MEMRI, and electrophysiology study.

机译:爆炸诱发的耳鸣:行为,MEMRI和电生理学的综合研究。

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摘要

Tinnitus and hearing loss are the frequent auditory-related co-morbidities of blast trauma. The etiology of blast-induced tinnitus is also muddled by brain mechanisms associated with emotional and cognitive problems such as anxiety, memory loss, and depression. We set out to develop a realistic and ecologically valid model to address changes of cognitive status and psychological state that are associated with blast- induced tinnitus. In this study, 19 adult rats were randomly divided into the sham group (n=6) and the blast group (n=13). Blast exposure (14 psi) was conducted via a shock wave tube to expose the left ears of the rats in the blast group, and a sham exposure was conducted to the rats in the sham group. Blast-induced tinnitus was evaluated with gap detection and pre-pulse inhibition (PPI) acoustic startle reflex paradigms; the changes of thresholds of the hearing was evaluated with auditory brainstem response (ABRs), the change in the level of anxiety was evaluated with elevated plus maze; and the change in the status of memory was evaluated with one-day Morris water maze. To investigate blast-induced neuronal changes in the limbic structures, we utilized MEMRI technique. Obtained with MRIcro, MR intensity signal-to-noise ratios (SNRs) of 83 selected limbic structures were measured to represent the level of synaptic activity. Of the 13 rats that were exposed to blast shock wave, 8 rats developed chronic tinnitus on post-exposure day 35 (PED35) and 5 rats did not. Our results showed that compared to rats in the sham group (n=6), (1) rats in the blast group with or without tinnitus demonstrated higher level of anxiety (p<0.05); (2) rats in the blast group that exhibited behavioral evidences of tinnitus (n=8) demonstrated neuronal hyperactivity in bilateral amygdaloidal complex, specifically bilateral basolateral groups and the left cortical-like group of the amygdala (p<0.05); and (3) rats in the blast group demonstrated neuronal hyperactivity in bilateral nucleus accumbens core (p<0.05). In conclusion, the elevated level of synaptic activity in the bilateral amygdala and nucleus accumbens core indicates central plasticity associated with blast-induced tinnitus.
机译:耳鸣和听力丧失是爆炸伤的常见听觉相关合并症。爆炸诱发的耳鸣的病因也被与情感和认知问题(如焦虑,记忆力减退和抑郁)相关的脑机制所困扰。我们着手开发一种现实且生态有效的模型,以解决与爆炸诱发的耳鸣相关的认知状态和心理状态的变化。在本研究中,将19只成年大鼠随机分为假手术组(n = 6)和爆炸组(n = 13)。通过冲击波管进行爆炸暴露(14 psi)以暴露爆炸组中大鼠的左耳,并且对假手术组中的大鼠进行假接触。通过间隙检测和脉冲前抑制(PPI)听觉惊吓反射范例评估爆炸诱发的耳鸣。用听觉脑干反应(ABRs)评估听力阈值的变化,用高架迷宫评估焦虑水平的变化;并用一日莫里斯水迷宫评估记忆状态的变化。为了研究爆炸诱导的边缘结构神经元变化,我们利用了MEMRI技术。通过MRIcro获得,测量了83个选定边缘结构的MR强度信噪比(SNR),以代表突触活动的水平。在暴露于冲击波的13只大鼠中,有8只在暴露后第35天(PED35)出现慢性耳鸣,而5只没有。我们的结果显示,与假手术组(n = 6)相比,(1)爆炸组有或没有耳鸣的大鼠表现出更高的焦虑水平(p <0.05); (2)爆炸组中表现出耳鸣行为证据的大鼠(n = 8)在双侧杏仁核复合体中表现出神经元过度活跃,特别是双侧基底外侧组和杏仁核的左侧皮质样组(p <0.05); (3)爆炸组的大鼠在伏隔核中表现出神经元过度活跃(p <0.05)。总之,双侧杏仁核和伏隔核核心中突触活性水平升高表明与胚泡诱发的耳鸣有关的中央可塑性。

著录项

  • 作者

    Ouyang, Jessica.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Biology Physiology.;Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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