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本文引用的文献

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Perirhinal cortex and its neighbours in the medial temporal lobe: contributions to memory and perception.内嗅皮质及其在内侧颞叶的相邻区域:对记忆和感知的贡献。
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Acoustic characteristics of air puff-induced 22-kHz alarm calls in direct recordings.直接录音中吹气诱发的22千赫兹警报叫声的声学特征。
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Principles of rat communication: quantitative parameters of ultrasonic calls in rats.大鼠交流的原理:大鼠超声波叫声的定量参数
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What is an auditory object?什么是听觉对象?
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Neural representation of vocalizations in the primate ventrolateral prefrontal cortex.灵长类动物腹外侧前额叶皮层中发声的神经表征。
J Neurophysiol. 2005 Feb;93(2):734-47. doi: 10.1152/jn.00675.2004. Epub 2004 Sep 15.
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Selective neurotoxic lesions of basolateral and central nuclei of the amygdala produce differential effects on fear conditioning.杏仁核基底外侧核和中央核的选择性神经毒性损伤对恐惧条件反射产生不同影响。
J Neurosci. 2004 Sep 1;24(35):7654-62. doi: 10.1523/JNEUROSCI.1644-04.2004.
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Learning with arbitrary versus ecological conditioned stimuli: evidence from sexual conditioning.使用任意条件刺激与生态条件刺激进行学习:来自性条件反射的证据。
Psychon Bull Rev. 2004 Apr;11(2):232-46. doi: 10.3758/bf03196565.
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Innateness and the instinct to learn.先天性与学习本能。
An Acad Bras Cienc. 2004 Jun;76(2):189-200. doi: 10.1590/s0001-37652004000200002. Epub 2004 Jun 8.
9
The medial temporal lobe.内侧颞叶。
Annu Rev Neurosci. 2004;27:279-306. doi: 10.1146/annurev.neuro.27.070203.144130.
10
Perirhinal cortex supports delay fear conditioning to rat ultrasonic social signals.嗅周皮质支持大鼠对超声波社交信号的延迟恐惧条件反射。
J Neurosci. 2004 Apr 7;24(14):3610-7. doi: 10.1523/JNEUROSCI.4839-03.2004.

大鼠嗅周皮层对22千赫兹超声发声的单神经元反应。

Single-unit responses to 22 kHz ultrasonic vocalizations in rat perirhinal cortex.

作者信息

Allen Timothy Alexander, Furtak Sharon Christine, Brown Thomas Huntington

机构信息

Department of Psychology, Yale University, 2 Hillhouse Ave., New Haven, CT 06520, USA.

出版信息

Behav Brain Res. 2007 Sep 4;182(2):327-36. doi: 10.1016/j.bbr.2007.03.009. Epub 2007 Mar 16.

DOI:10.1016/j.bbr.2007.03.009
PMID:17445914
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2040343/
Abstract

Rats emit ultrasonic vocalizations (USVs) as social signals in several situations. Lesion studies have shown that rat perirhinal cortex (PR), a polymodal sensory region that is reciprocally connected with the amygdala, is critical for normal fear conditioning to so-called "22 kHz USVs". Here we evaluated single-unit responses in rat PR to 22 kHz USVs and other acoustic stimuli. One question was whether PR circuits are specifically and preferentially tuned, prior to fear conditioning, to respond to USVs and USV-like stimuli. Two 22 kHz USVs were pre-recorded from different conspecifics. Each USV consisted of a "bout" of several discrete calls. Using experimentally naïve rats, single-unit responses to the USVs were compared with responses to continuous or discontinuous tones that had the same root frequency as the USVs (19 or 22 kHz). The on/off patterns of the discontinuous tones were temporally matched to the call structure in the corresponding USVs. Compared to continuous tones, the USVs were no more likely to elicit single-unit firing changes in PR. On the other hand, the continuous tones and USVs clearly did elicit different firing patterns in many units. More specifically, the USVs sometimes elicited a transient increase in discharge frequency to each call in a bout of calls. Interestingly, the USVs and the temporally matched tone segments usually elicited similar firing patterns. The USV-elicited firing pattern in PR thus appears to be controlled by the on/off temporal structure of the calls rather than by the frequency or amplitude modulations associated with each call in a bout of calls.

摘要

大鼠在多种情况下会发出超声波发声(USV)作为社交信号。损伤研究表明,大鼠的嗅周皮质(PR)是一个多模式感觉区域,与杏仁核相互连接,对于对所谓“22 kHz USV”的正常恐惧条件反射至关重要。在此,我们评估了大鼠PR中对22 kHz USV和其他声学刺激的单神经元反应。一个问题是,在恐惧条件反射之前,PR回路是否被特异性且优先调整以对USV和类似USV的刺激做出反应。从不同的同种个体中预先录制了两个22 kHz的USV。每个USV由一阵几个离散叫声组成。使用未经实验的大鼠,将对USV的单神经元反应与对具有与USV相同基频(19或22 kHz)的连续或不连续音调的反应进行比较。不连续音调的开/关模式在时间上与相应USV中的叫声结构相匹配。与连续音调相比,USV在PR中引发单神经元放电变化的可能性并不更高。另一方面,连续音调和USV在许多神经元中显然确实引发了不同的放电模式。更具体地说,USV有时会在一阵叫声中的每个叫声引发放电频率的短暂增加。有趣的是,USV和时间上匹配的音调片段通常会引发相似的放电模式。因此,PR中由USV引发的放电模式似乎由叫声的开/关时间结构控制,而不是由一阵叫声中与每个叫声相关的频率或幅度调制控制。