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Gustatory Projections from the Nucleus of the Solitary Tract to the Parabrachial Nuclei in the Hamster

机译:从孤立道核到仓鼠臂旁核的前部投射。

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Taste-responsive cells in the nucleus of the solitary tract (NST) either project to the parabrachial nuclei (PbN) of the pons, through which taste information is transmitted to forebrain gustatory nuclei, or give rise to axons terminating locally within the medulla. Numerous anatomical studies clearly demonstrate a substantial projection from the rostral NST, where most taste-responsive cells are found, to the PbN. In contrast, previous electrophysiological studies in the rat have shown that only a small proportion (21-45%) of taste-responsive NST cells are antidromically acativated from the PbN, suggesting that less than half the cells recorded from the NST are actually involved in forebrain processing of gustatory information. In the prest experiment we investigated the projections from the NST to the PbN elecrophysiologically in urethane anesthetized hamsters. Responses of 101 single neurons in the rostral NST were recorded extracellularly following lingual stimulation with 32 mM NaCl, sucrose and quinine hydrochloride (QHCl) and 3.2 mM citric acid. The taste-responsive region of the PbN was identified electrophysiologically and stimulated with a concentric bipolar electrode to antidromically active each NST cell. Of the 101 taste-responsive NST cells, 81 (80.2%) were antidromically activated from the ipsilateral PbN. The mean firing rates to taste stimulation and the spontaneous activity of these projection neurons were significantly greater than those of non-projecting cells. Every sucrose-best neuron in the sample projected to the PbN. The mean conduction velocity of the 23 QHCl-best neurons was significantly lower than that of the other 58 PbN projection neurons, suggesting that the most QHCl-responsive cells are a subset of smaller neurons. These data show that a large majority of NST cells responsive to tast stimulation of the anterior tongue project to the gustatory subdivisions of the PbN and that these cells have the most robust responses to gustatory stimulation.
机译:孤立道(NST)核中的味觉反应性细胞投射到桥的臂旁臂核(PbN),通过味觉信息细胞将味觉信息传递到前脑味觉核,或产生终止于延髓内的轴突。大量的解剖学研究清楚地表明,从发现大多数嗅觉敏感细胞的延髓NST到PbN的实质性投影。相比之下,先前在大鼠中进行的电生理研究表明,只有少量(21-45%)的味觉反应性NST细胞是从PbN中抗性地激活的,这表明从NST记录的细胞中实际上不到一半参与了前脑处理味觉信息。在perst实验中,我们用电子生理学方法研究了氨基甲酸乙酯麻醉仓鼠从NST到PbN的预测。在用32 mM NaCl,蔗糖和奎宁盐酸盐(QHCl)和3.2 mM柠檬酸进行舌状刺激后,在细胞外记录了表皮NST中101个单神经元的反应。通过电生理学鉴定PbN的味觉响应区域,并用同心双极电极刺激,以使每个NST细胞具有抗自由基活性。在101个味觉响应性NST细胞中,有81个(80.2%)从同侧PbN中被抗磷酸化激活。这些投射神经元对味觉刺激的平均激发速率和自发活动显着高于非投射细胞。样品中每个蔗糖最佳的神经元都投射到PbN上。 23个QHCl最佳神经元的平均传导速度显着低于其他58个PbN投射神经元的平均传导速度,表明大多数QHCl反应细胞是较小神经元的子集。这些数据表明,大多数的NST细胞对味觉刺激前舌刺激反应投射到PbN的味觉细分,并且这些细胞对味觉刺激具有最强的反应。

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