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New vistas on amygdala networks in conditioned fear.条件性恐惧中杏仁核网络的新视角。
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2
Damage to the lateral and central, but not other, amygdaloid nuclei prevents the acquisition of auditory fear conditioning.杏仁核外侧核和中央核而非其他核团受损会阻碍听觉恐惧条件反射的习得。
Learn Mem. 2001 May-Jun;8(3):156-63. doi: 10.1101/lm.38101.
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Lesions of the amygdala central nucleus alter performance on a selective attention task.杏仁核中央核的损伤会改变选择性注意力任务的表现。
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Lidocaine blockade of amygdala output in fear-conditioned rats reduces Fos expression in the ventrolateral periaqueductal gray.利多卡因对恐惧条件反射大鼠杏仁核输出的阻滞作用可降低腹外侧导水管周围灰质中的Fos表达。
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Amygdala circuitry in attentional and representational processes.杏仁核神经回路在注意力和表征过程中的作用。
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Disconnection of the amygdala central nucleus and substantia innominata/nucleus basalis disrupts increments in conditioned stimulus processing in rats.切断大鼠杏仁核中央核与无名质/基底核会破坏条件刺激处理过程中的增量。
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Direct comparison of projections from the central amygdaloid region and nucleus accumbens shell.来自中央杏仁核区域和伏隔核壳部投射的直接比较。
Eur J Neurosci. 1999 Apr;11(4):1119-26. doi: 10.1046/j.1460-9568.1999.00524.x.
8
Removal of cholinergic input to rat posterior parietal cortex disrupts incremental processing of conditioned stimuli.去除大鼠顶叶后皮质的胆碱能输入会破坏条件刺激的增量处理。
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Projections from the lateral part of the central amygdalar nucleus to the postulated fear conditioning circuit.从中央杏仁核外侧部分到假定的恐惧条件反射回路的投射。
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Autonomic and behavioral correlates of appetitive conditioning in rats.大鼠食欲性条件反射的自主神经及行为相关性
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杏仁核-黑质神经回路在与食物配对的视觉刺激条件反射中的作用。

Role of amygdalo-nigral circuitry in conditioning of a visual stimulus paired with food.

作者信息

Lee Hongjoo J, Groshek Frank, Petrovich Gorica D, Cantalini Joseph P, Gallagher Michela, Holland Peter C

机构信息

Department of Psychological and Brain Sciences, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

J Neurosci. 2005 Apr 13;25(15):3881-8. doi: 10.1523/JNEUROSCI.0416-05.2005.

DOI:10.1523/JNEUROSCI.0416-05.2005
PMID:15829640
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1201483/
Abstract

The amygdala central nucleus (CeA) plays an important part in associative learning. Although most research has focused on functions of its descending projections to brainstem areas involved in autonomic and somatomotor responses, the ascending projections of CeA also play critical roles in learning. For example, a CeA-nigrostriatal pathway is important for acquiring orienting responses (ORs) to conditioned stimuli (CSs) that signal food delivery. In this study, the function of this CeA-nigrostriatal pathway in appetitive conditioning of rats was considered in more detail. In experiment 1, we combined anatomical tracing and methods for detecting neuronal activation to examine whether CeA neurons that project to the substantia nigra pars compacta (SNc) are activated by a visual CS for food. After injection of the retrograde tracer Fluoro-Gold (FG) into SNc, the rats received pairings of a visual CS with food. After a test with the CS alone, the brains were prepared to assess FG labeling and CS-induced Fos expression in CeA with immunohistochemical procedures. Colocalization of Fos and FG in CeA neurons was visualized with confocal-fluorescence microscopy. The CS induced Fos expression in CeA, and a majority of these Fos-positive neurons were also FG positive, indicating activation of the CeA-SNc pathway by the CS. In experiment 2, lesions that disconnected CeA and SNc prevented the acquisition of conditioned ORs but did not affect the acquisition of conditioned food-related responses or the display of unconditioned ORs. These experiments demonstrate a role for amygdalo-nigral circuitry in learned modulation of attention to signals for biologically significant events.

摘要

杏仁核中央核(CeA)在联想学习中起着重要作用。尽管大多数研究都集中在其向下投射到参与自主和躯体运动反应的脑干区域的功能上,但CeA的向上投射在学习中也起着关键作用。例如,一条CeA-黑质纹状体通路对于获得对预示食物投递的条件刺激(CS)的定向反应(OR)很重要。在本研究中,我们更详细地探讨了这条CeA-黑质纹状体通路在大鼠食欲性条件反射中的功能。在实验1中,我们结合解剖追踪和检测神经元激活的方法,以检查投射到黑质致密部(SNc)的CeA神经元是否会被食物的视觉CS激活。将逆行示踪剂氟金(FG)注射到SNc后,让大鼠接受视觉CS与食物的配对。在单独用CS进行测试后,制备大脑,用免疫组织化学方法评估CeA中FG标记和CS诱导的Fos表达。通过共聚焦荧光显微镜观察CeA神经元中Fos和FG的共定位。CS诱导了CeA中的Fos表达,并且这些Fos阳性神经元中的大多数也是FG阳性,表明CS激活了CeA-SNc通路。在实验2中,切断CeA和SNc的损伤阻止了条件性OR的获得,但不影响条件性食物相关反应的获得或非条件性OR的表现。这些实验证明了杏仁核-黑质神经回路在对生物学上重要事件的信号进行学习调节注意力方面的作用。