首页> 美国卫生研究院文献>The Journal of Neuroscience >Equipotentiality of thalamo-amygdala and thalamo-cortico-amygdala circuits in auditory fear conditioning
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Equipotentiality of thalamo-amygdala and thalamo-cortico-amygdala circuits in auditory fear conditioning

机译:丘脑-杏仁核和丘脑-皮质-杏仁核回路在听觉恐惧中的等势性

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摘要

The goal of the present study was to examine the contribution of thalamo-amygdala and thalamo-cortico-amygdala projections to fear conditioning. Lesions were used to destroy either the thalamo-cortico- amygdala projection, the thalamo-amygdala projection, or both projections, and the effects of such lesions on the acquisition of conditioned fear responses (changes in arterial pressure and freezing behavior) to a tone paired with footshock were measured. In each group of animals examined, a large lesion of the acoustic thalamus, including all nuclei of the medial geniculate body and adjacent portions of the posterior thalamus, was made on one side of the brain to block auditory transmission to the forebrain at the level of the thalamus on that side. In this way, experimental lesions could be made on the contralateral side of the brain. Thus, animals with thalamo-amygdala pathway lesions received a large lesion of the acoustic thalamus on one side. Contralaterally, only the nuclei that project to the amygdala (the medial division of the medial geniculate body, the posterior intralaminar nucleus, and the suprageniculate nucleus) were selectively destroyed, leaving much of the thalamo-cortico-amygdala projection intact. For thalamo-cortico-amygdala pathway lesions, the acoustic thalamus was destroyed on one side and temporal and perirhinal cortices were ablated contralaterally. In these animals, thalamo-amygdala projections were intact on the side of the cortical lesion. Destruction of either pathway alone had no effect on auditory fear conditioning. However, combined lesions of the two sensory pathways disrupted conditioning.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:本研究的目的是检验丘脑-杏仁核和丘脑-皮质-杏仁核投射对恐惧适应的贡献。病变被用于破坏丘脑-皮质-杏仁核投射,丘脑-杏仁核投射或两个投射,以及这些损害对条件配对的恐惧反应(动脉压和冰冻行为的变化)的获取对配对音调的影响用足底震动进行了测量。在检查的每组动物中,在大脑的一侧制作了一个巨大的声丘脑病变,包括内侧膝状肌体的所有核以及后丘脑的相邻部分,以阻止听觉传递到前脑。一侧的丘脑。这样,可以在大脑的对侧进行实验性病变。因此,具有丘脑-扁桃体途径损伤的动物在一侧接受了较大的声丘脑损伤。相反地​​,只有突出到杏仁核的核(内侧膝状体的中间部分,后椎板内核和超膝状核)被选择性地破坏,而大部分丘脑-皮质-杏仁核的投射完好无损。对于丘脑-皮质-杏仁核途径病变,一侧的声学丘脑被破坏,颞侧和周围神经皮层被消融。在这些动物中,皮质病变一侧的丘脑-杏仁核突起完好无损。单独破坏任一途径都不会影响听觉恐惧。然而,两种感觉途径的综合损害破坏了调节。(摘要截断为250字)

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