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首页> 外文期刊>American Journal of Physiology >Modulation of activity of gustatory neurons in the hamster parabrachial nuclei by electrical stimulation of the ventroposteromedial nucleus of the thalamus
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Modulation of activity of gustatory neurons in the hamster parabrachial nuclei by electrical stimulation of the ventroposteromedial nucleus of the thalamus

机译:丘脑腹膜内孔核化核电刺激调节仓鼠骨髓细胞核中的味觉神经元的活性

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摘要

The parvicellular part of the ventroposteromedial nucleus of the thalamus (VPMpc) is positioned at the key site between the gustatory parabrachial nuclei (PbN) and the gustatory cortex for relaying and processing gustatory information via the thalamocortical pathway. Although neuroanatomicaland electrophysiological studies have provided information regarding the gustatory projection from PbN to VPMpc, the exact relationship between PbN and VPMpc, especially the efferent projection involving VPMpc to PbN, is obscure. Here we investigated the reciprocal connection between these two gustatory relays in urethane-anesthetized hamsters. We recorded from 114 taste-responsive neurons in the PbN and examined their responsiveness to electrical stimulation of the VPMpc bilaterally. Stimulation of either or both of the ipsilateral or contralateral VPMpc antidromically activated 109 gustatory PbN neurons. Seventy-two PbN neurons were antidromically activated after stimulation of both sides of the VPMpc, indicating that taste neurons in the PbN project heavily to the bilateral VPMpc. Stimulation of VPMpc also orthodromically activated 110 of PbN neurons, including 106 VPMpc projection neurons. Seventy-eight neurons were orthodromically activated bilaterally. Among orthodromic activations of the PbN cells, the inhibitory response was the dominant response; 106 cells were inhibited, including 10 neurons that were also excited contralaterally, indicating that taste neurons in the PbN are subject to strong inhibitory control from VPMpc. Moreover, stimulation of VPMpc altered taste responses of the neurons in the PbN, indicating that VPMpc modulates taste responses of PbN neurons. These results may provide functional insight of neural circuitry for taste processing and modulation involving these two nuclei.
机译:丘脑(VPMPC)的腹口核细胞核部分的静脉内部部分位于味道桥核(PBN)和味觉皮层之间通过ThalamoCortical途径进行中继和加工味道信息的关键部位。尽管神经杀灭的电生理学研究已经提供了关于从PBN到VPMPC的味觉投影的信息,但PBN和VPMPC之间的确切关系,尤其是涉及VPMPC至PBN的传出投影是模糊的。在这里,我们研究了氨基甲酸酯麻醉仓鼠中这两个味觉继电器之间的互敏联系。我们从PBN中的114名响应神经元记录,并检查了它们对双侧的VPMPC电刺激的反应。刺激同侧或对侧VPMPC抗体激活的109个味剂PBN神经元的任一或两种。在刺激VPMPC的两侧刺激后,七十二个PBN神经元在刺激vPMPC两侧,表明PBN中的味道神经元繁重地向双侧VPMPC重新划分。刺激VPMPC也在正交激活110个PBN神经元,包括106VPMPC投影神经元。七十八个神经元在双侧矫正下垂直。在PBN细胞的正交激活中,抑制反应是主导反应;抑制了106个细胞,其中包含对侧兴奋的10个神经元,表明PBN中的味道神经元受到VPMPC的强抑制性控制。此外,刺激VPMPC在PBN中的神经元的味道反应改变,表明VPMPC调节PBN神经元的味道响应。这些结果可以提供神经电路的功能识别,用于涉及这两个核的味道加工和调制。

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