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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 >Nuclear size of c-Fos expression at the auditory brainstem is related to the time-varying nature of the acoustic stimuli.
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Nuclear size of c-Fos expression at the auditory brainstem is related to the time-varying nature of the acoustic stimuli.

机译:听觉脑干c-Fos表达的核大小与声刺激的时变性质有关。

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Acoustic stimulation is known to induce c-Fos expression in the auditory system but how the expression might be related to the time-variance of the sound (e.g., steady or frequency-varying) is unclear. Here we measured morphometrically Fos-immunohistochemical stains at the auditory brainstem after exposing rats to a pure tone or a narrow-range frequency modulated (FM) sound for various durations (10, 30 or 90 min). Nuclear sizes of Fos-stains at the cochlear nucleus (CN) and inferior colliculus (IC) were estimated under microscope. Tone stimulation at the given frequency (9 kHz) induced Fos-expression at locations consistent with the tonotopic maps, and no clear difference in the spatial distribution of the Fos-stains was observed across stimuli. In general, more Fos-stains appeared after longer stimulations and most notably cell nuclei labeled with Fos-immunoreactivity were statistically larger in size under longer pure tone and FM tone stimulations. Findings suggest that Fos-expression mechanisms arerelated to the selective response of different subpopulations of neurons to sounds of different time-varying properties. Results support that the time-variance of acoustic stimulation should be considered in the interpretation of Fos-expression findings.
机译:已知声刺激在听觉系统中诱导c-Fos表达,但是尚不清楚该表达如何与声音的时变(例如,稳定或频率变化)相关。在这里,我们在将大鼠暴露于纯音或窄范围频率调制(FM)声音持续不同的持续时间(10、30或90分钟)后,在听觉脑干上测量了形态计量学上的Fos免疫组织化学染色。在显微镜下估计了耳蜗核(CN)和下丘脑(IC)的Fos染色的核大小。在给定的频率(9 kHz)下,音调刺激会在与色调图一致的位置诱导Fos表达,并且在整个刺激过程中,Fos染色的空间分布没有明显差异。通常,在更长的刺激后出现更多的Fos染色,并且在更长的纯音和FM音刺激下,标记为Fos免疫反应性的细胞核的大小在统计学上更大。研究结果表明,Fos表达机制与神经元的不同亚群对不同时变特性的声音的选择性反应有关。结果支持在解释Fos表达结果时应考虑声刺激的时变性。

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