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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Evidence of decreased GABAergic influence on temporal integration in the inferior colliculus following acute noise exposure: a study of evoked potentials in the rat.
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Evidence of decreased GABAergic influence on temporal integration in the inferior colliculus following acute noise exposure: a study of evoked potentials in the rat.

机译:急性噪声暴露后下丘脑中GABA能量对时间整合的影响降低的证据:对大鼠诱发电位的研究。

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摘要

Many investigations have shown that modulation of sensory input, either by over stimulation or sensory deprivation, can cause a reorganization of structures located high in the central nervous system (CNS). Although most of these studies had focused on studying changes in the function and tonotopic organization of the sensory cortex, recent evidence has suggested that plastic changes in specific subcortical nuclei of sensory systems may also occur in response to modulation of sensory input, and may be partially responsible for changes reflected at the level of the cortex. In the present study we investigated the effects of noise exposure (4-kHz continuous tone at 104 dB sound pressure level (SPL) for 30 min duration) on the processing of auditory information at the level of the inferior colliculus (IC). We studied how evoked potentials recorded from the surface of the IC changed as a function of the duration of the tone bursts used as stimuli. We measured the amplitude of a peak that is generated postsynaptically in the IC in response to tone bursts between 1 and 6 ms duration. In animals that were not exposed to the tone, the amplitude of this peak decreased with increasing stimulus duration, but after tone exposure, the decrease in the amplitude of this peak was significantly less than in the animals not exposed to the tone. A microinjection of the GABAA antagonist, bicucullene, into the IC in the animals not exposed to the tone caused the amplitude of the peak to be less dependent on tone burst duration, which indicates that the decrease in the amplitude of this component of the response from the IC with increasing stimulus duration is a result of GABAA mediated inhibition on IC neurons. The tone exposure caused a similar decrease in amplitude of this component of the response from the IC, thus indicating that noise exposure reduced the GABAA mediated component of this function. This is supported by the finding that microinjections of bicucullene into the IC of noise-exposed animals did not significantly change the relationship between the amplitude of this peak and the stimulus duration.
机译:许多研究表明,通过过度刺激或感觉剥夺来调节感觉输入,会导致位于中枢神经系统(CNS)高处的结构重组。尽管这些研究大多集中在研究感觉皮层功能和功能的改变,但最近的证据表明,感觉系统特定皮层下核的塑性变化也可能是由于感觉输入的调节而发生的,并且可能部分负责反映皮质水平的变化。在本研究中,我们研究了噪声暴露(在104 dB声压级(SPL)下持续30分钟的时间为4 kHz连续音)对下丘脑(IC)级别的听觉信息处理的影响。我们研究了从IC表面记录的诱发电位如何随用作刺激的音调脉冲持续时间的变化而变化。我们测量了响应于1至6 ms持续时间之间的音调猝发在IC中突触后产生的峰值的幅度。在未暴露于音调的动物中,该峰值的幅度随着刺激持续时间的增加而降低,但是在暴露于音调后,该峰值的幅度的降低明显小于未暴露于音调的动物。在未暴露于声调的动物中向IC中微量注射GABAA拮抗剂比库三烯导致峰的幅度较少依赖于声调猝发持续时间,这表明响应的这一部分的幅度降低了具有持续刺激时间的IC是GABAA介导的IC神经元抑制作用的结果。音调暴露导致来自IC的响应的该分量的幅度出现类似的下降,因此表明噪声暴露降低了该功能的GABAA介导的分量。这一发现得到了支持,即将比库三烯微注射到受噪声影响的动物的IC中,并不会显着改变该峰值的幅度与刺激持续时间之间的关系。

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