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首页> 外文期刊>Brain research >Electrophysiological changes in auditory evoked potentials in rats with salicylate-induced tinnitus
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Electrophysiological changes in auditory evoked potentials in rats with salicylate-induced tinnitus

机译:大鼠诱发耳鸣诱发电位的电生理变化

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Early-response auditory evoked potentials (AEPs) in humans are significantly altered in tinnitus. These changes are closely related to that seen in animals, leading to new approaches to study tinnitus based on objective parameters. The purpose of this study was to characterize the AEPs in animals with tinnitus, by assessing early to late latency responses. For behavioral evaluation, rats were trained using positive reinforcement to press a lever in the presence of an auditory stimulus and to not press during silence. The auditory brainstem response (ABR), middle latency response (MLR) and auditory late latency response (LLR) were correlated to the false-positive responses (pressing the lever during silence), after oral administrations of Sodium Salicylate (SS, 350 mg/kg). In the present study, SS significantly increased the hearing thresholds and reduced ABR peak I amplitudes across the frequency range (4-32 kHz). In contrast, increased amplitudes were observed for several peaks in ABR, MLR, and LLR. Moreover, reduced ABR latencies in response to 8, 16 and 24 kHz tone bursts were observed after SS administration. Similarly, the central evaluation also revealed significantly reduced latencies in MLR and LLR during SS administration. In contrast, increased latencies were observed for ABR latencies in response to 32 kHz tone bursts, and at the P1-N1 component of LLR. Correlational analysis revealed that latencies and amplitudes of peaks II and IV (8 and 16 kHz) of ABR, and N2 latency and P2-N2 amplitude of LLR were associated with behavioral tinnitus. We suggest that AEPs can be used in the rat to evaluate the reduced sensory input and the increased central gain in SS-induced tinnitus, as well as reduced latencies (8-16 kHz) to distinguish between hearing loss and tinnitus.
机译:耳鸣的早期反应听觉诱发潜力(AEP)显着改变。这些变化与动物中所见的密切相关,导致新方法基于客观参数研究耳鸣。本研究的目的是通过评估早期延迟反应来表征与耳鸣的动物中的AEPs。对于行为评估,使用正钢筋训练大鼠在听觉刺激的存在下按下杠杆,并在沉默期间不按压。听觉脑干响应(ABR),中延迟响应(MLR)和听觉晚期延迟响应(LLR)与劣质水溶生钠(SS,350mg /公斤)。在本研究中,SS显着增加了听力阈值并减少了频率范围(4-32kHz)的ABR峰I幅度。相反,在ABR,MLR和LLR中观察到几个峰的增加的振荡。此外,在SS给药后观察到响应于8,16和24kHz色调突发的ABR延迟。类似地,中央评估在SS管理期间,MLR和LLR中的延迟也显着降低。相比之下,响应于32 kHz色调突发以及LLR的P1-N1组分,对ABR延迟观察到增长的延迟。相关性分析显示ABR的峰II和IV(8和16kHz)和N2潜伏期和LLR的N2潜伏期和LLR的延迟和幅度与行为耳鸣有关。我们表明AEP可以在大鼠中使用,以评估SS诱导的耳鸣中的减少的感觉输入和增加的中央增益,以及减少延迟(8-16 kHz)以区分听力损失和耳鸣。

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