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γ-氨基丁酸(GABA)介导的抑制作用在大棕蝠(Eptesicus fuscus)下丘神经元频率选择性形成中的作用。

Involvement of GABA-mediated inhibition in shaping the frequency selectivity of neurons in the inferior colliculus of the big brown bat, Eptesicus fuscus.

作者信息

Wu Feijian, Jen Philip H-S

机构信息

College of Life Sciences, Central China Normal University, Wuhan 430079, Hubei, PRC.

出版信息

Chin J Physiol. 2009 Feb 28;52(1):38-46. doi: 10.4077/cjp.2009.amh002.

DOI:10.4077/cjp.2009.amh002
PMID:19764352
Abstract

In central auditory signal processing, neural inhibition plays an important role in sharpening the selectivity of auditory neurons. The present study examines the involvement of GABA-mediated inhibition in shaping the frequency selectivity of neurons in the bat inferior colliculus (IC) using forward masking paradigm and bicuculline application. At each study session, we recorded two IC neurons with a pair of electrodes and reciprocally studied whether a sound that served as a probe to elicit response of one neuron might serve as a masker to affect the frequency tuning curve (FTC) of the other paired neuron. Among the 33 pairs of IC neurons recorded, this forward masking paradigm produces sharpening of the FTC in 29 (88%) pairs of IC neurons and broadening of the FTC in 4 (12%) pairs of IC neurons. The degree of sharpening of FTC decreases with recording depth as well as with the difference in the best frequency and recording depth between each pair of IC neurons. Although bicuculline application broadens the FTC of all IC neurons, forward masking still produces sharpening of the FTC in most IC neurons. These data suggest that population of IC neurons are highly correlated during frequency analysis such that frequency selectivity of some groups of IC neurons is improved through inhibition while the spectrum of frequency sensitivity of other groups of IC neurons is enhanced through excitation. Biological significance of these data relevant to acoustic signal processing is discussed.

摘要

在中枢听觉信号处理中,神经抑制在锐化听觉神经元的选择性方面发挥着重要作用。本研究使用前掩蔽范式和荷包牡丹碱应用,研究了γ-氨基丁酸(GABA)介导的抑制在塑造蝙蝠下丘(IC)神经元频率选择性中的作用。在每个研究阶段,我们用一对电极记录两个IC神经元,并相互研究作为一个神经元反应探针的声音是否可能作为掩蔽音影响另一对配对神经元的频率调谐曲线(FTC)。在记录的33对IC神经元中,这种前掩蔽范式使29对(88%)IC神经元的FTC锐化,4对(12%)IC神经元的FTC展宽。FTC的锐化程度随记录深度以及每对IC神经元之间最佳频率和记录深度的差异而降低。尽管应用荷包牡丹碱会使所有IC神经元的FTC展宽,但前掩蔽在大多数IC神经元中仍会使FTC锐化。这些数据表明,在频率分析过程中,IC神经元群体高度相关,以至于一些IC神经元群的频率选择性通过抑制得到改善,而其他IC神经元群的频率敏感谱通过兴奋得到增强。本文讨论了这些数据与声信号处理相关的生物学意义。

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Front Neural Circuits. 2021 Aug 27;15:718348. doi: 10.3389/fncir.2021.718348. eCollection 2021.
2
Local inhibition of GABA affects precedence effect in the inferior colliculus.局部抑制 GABA 会影响下丘脑中的优先效应。
Neural Regen Res. 2014 Feb 15;9(4):420-9. doi: 10.4103/1673-5374.128250.
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Neural interactions in unilateral colliculus and between bilateral colliculi modulate auditory signal processing.
单侧丘脑中的神经相互作用和双侧丘脑中的神经相互作用调节听觉信号处理。
Front Neural Circuits. 2013 Apr 19;7:68. doi: 10.3389/fncir.2013.00068. eCollection 2013.
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Bilateral collicular interaction: modulation of auditory signal processing in amplitude domain.双侧丘系间相互作用:对幅度域听觉信号处理的调制。
PLoS One. 2012;7(7):e41311. doi: 10.1371/journal.pone.0041311. Epub 2012 Jul 24.