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氨基甲酸乙酯可改善听觉神经元对音调的反应。

Urethane Improves the Response of Auditory Neurons to Tone.

作者信息

Huang Bowan, Yan Linqing, Li Yan, Liu Wenhui, Liu Manhua, Xiao Zhongju, Huang Jinping

机构信息

Department of Physiology, School of Basic Medical Sciences, Southern Medical University, Guangzhou, China.

Department of Anesthesiology, Shenzhen Traditional Chinese Medicine Hospital, The Fourth Clinical Medical College of Guangzhou University of Chinese Medicine, Shenzhen, China.

出版信息

Front Cell Neurosci. 2022 Jun 15;16:855968. doi: 10.3389/fncel.2022.855968. eCollection 2022.

Abstract

Urethane has little effect on nervous system and is often used in neuroscience studies. However, the effect of urethane in neurons is not thoroughly clear. In this study, we investigated changes in neuron responses to tones in inferior colliculus during urethane anesthesia. As urethane was metabolized, the best and characteristic frequencies did not obviously change, but the minimal threshold (MT) remained relatively stable or was elevated. The frequency tuning bandwidth at 60 dB SPL (BW) remained unchanged or decreased, and the average evoked spike of effective frequencies at 60 dB SPL (ES) gradually decreased. Although the average evoked spike of effective frequencies at a tone intensity of 20 dB SPL above MT (ES) decreased, the frequency tuning bandwidth at a tone intensity of 20 dB SPL above MT (BW) did not change. In addition, the changes in MT, ES, BW, and ES increased with the MT in pre-anesthesia awake state (MT). In some neurons, the MT was lower, BW was broader, and ES and ES were higher in urethane anesthesia state than in pre-anesthesia awake state. During anesthesia, the inhibitory effect of urethane reduced the ES, but did not change the MT, characteristic frequency, or BW. In the recording session with the strongest neuron response, the first spike latency did not decrease, and the spontaneous spike did not increase. Therefore, we conclude that urethane can reduce/not change the MT, increase the evoked spike, or broaden/not change the frequency tuning range, and eventually improve the response of auditory neurons to tone with or without "pushing down" the tonal receptive field in thresholding model. The improved effect increases with the MT of neurons. The changes induced by the inhibitory and improved effects of urethane abide by similar regularities, but the change directions are contrary. The improvement mechanism may be likely due to the increase in the ratio of excitatory/inhibitory postsynaptic inputs to neurons.

摘要

乌拉坦对神经系统影响较小,常用于神经科学研究。然而,乌拉坦对神经元的作用尚不完全清楚。在本研究中,我们调查了乌拉坦麻醉期间下丘神经元对音调反应的变化。随着乌拉坦代谢,最佳频率和特征频率无明显变化,但最小阈值(MT)保持相对稳定或升高。60 dB声压级(BW)下的频率调谐带宽保持不变或减小,60 dB声压级(ES)下有效频率的平均诱发尖峰逐渐降低。尽管在高于MT 20 dB声压级的音调强度下有效频率的平均诱发尖峰(ES)降低,但高于MT 20 dB声压级的音调强度下的频率调谐带宽(BW)未改变。此外,MT、ES、BW和ES的变化与麻醉前清醒状态下的MT(MT)相关。在一些神经元中,乌拉坦麻醉状态下的MT较低、BW较宽、ES和ES高于麻醉前清醒状态。麻醉期间,乌拉坦的抑制作用降低了ES,但未改变MT、特征频率或BW。在神经元反应最强的记录时段,首个尖峰潜伏期未缩短,自发放电未增加。因此,我们得出结论,乌拉坦可降低/不改变MT、增加诱发尖峰或拓宽/不改变频率调谐范围,并最终改善听觉神经元对音调的反应,在阈值模型中是否“压低”音调感受野。改善效果随神经元的MT增加。乌拉坦的抑制和改善作用引起的变化遵循相似规律,但变化方向相反。改善机制可能是由于神经元兴奋性/抑制性突触后输入比例增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e8e/9240349/ddd22faf4caf/fncel-16-855968-g0001.jpg

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