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单只仓鼠臂旁核神经元对氯化钠与蔗糖或盐酸喹啉二元味觉混合物的反应。

Responses of single hamster parabrachial neurons to binary taste mixtures of NaCl with sucrose or QHCl.

作者信息

Vogt M B, Smith D V

机构信息

Department of Otolaryngology, Head and Neck Surgery, University of Cincinnati College of Medicine, Ohio 45267.

出版信息

J Neurophysiol. 1994 Apr;71(4):1373-80. doi: 10.1152/jn.1994.71.4.1373.

DOI:10.1152/jn.1994.71.4.1373
PMID:8035221
Abstract
  1. Although human psychophysical responses to taste mixtures have been investigated extensively, there have been few reports on the neurophysiological coding of taste mixtures in the mammalian gustatory system. In recent studies we have investigated the responses of single third-order neurons in the hamster parabrachial nucleus (PbN) to anterior tongue stimulation with binary mixtures of heterogenous taste stimuli including sucrose+QHCl, sucrose+citric acid, and NaCl+citric acid. Some of these stimulus combinations evoked mixture suppression, or response frequencies that were less than that evoked by the more effective component (MEC) presented alone, which is analogous to the mixture suppression reported in human psychophysical studies of similar taste mixtures. In the current report we extend our investigation to include NaCl+QHCl and NaCl+sucrose mixtures. 2. The action potentials of single PbN neurons were recorded extracellularly. Four concentrations of each stimulus were employed: NaCl and sucrose at 0.001, 0.01, 0.1, and 1.0 M; QHCl at 0.00032, 0.0032, 0.032, and 0.1 M. All stimuli were tested alone and in mixture; the NaCl+sucrose and NaCl+QHCl mixtures were formed by pairing the four concentrations of each stimulus with the strongest concentration of the other stimulus. 3. For both NaCl+sucrose and NaCl+QHCl mixtures, the response frequencies evoked by the mixtures did not differ from those evoked by the MEC presented alone, whether averaged across all neurons or across subgroups of NaCl- or sucrose-best cells. Furthermore, the across-neuron patterns (ANPs) of mixture responses were similar to those of the MECs.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 尽管人类对味觉混合物的心理物理反应已得到广泛研究,但关于哺乳动物味觉系统中味觉混合物的神经生理编码的报道却很少。在最近的研究中,我们研究了仓鼠臂旁核(PbN)中单个三级神经元对用包括蔗糖 + 盐酸奎宁、蔗糖 + 柠檬酸和氯化钠 + 柠檬酸在内的异质味觉刺激二元混合物刺激舌前部的反应。这些刺激组合中的一些引起了混合物抑制,即反应频率低于单独呈现的更有效成分(MEC)所引起的频率,这类似于在人类对类似味觉混合物的心理物理研究中报道的混合物抑制。在本报告中,我们将研究扩展到包括氯化钠 + 盐酸奎宁和氯化钠 + 蔗糖混合物。2. 细胞外记录单个PbN神经元的动作电位。每种刺激采用四种浓度:氯化钠和蔗糖分别为0.001、0.01、0.1和1.0 M;盐酸奎宁为0.00032、0.0032、0.032和0.1 M。所有刺激均单独测试和混合测试;氯化钠 + 蔗糖和氯化钠 + 盐酸奎宁混合物是通过将每种刺激的四种浓度与另一种刺激的最强浓度配对形成的。3. 对于氯化钠 + 蔗糖和氯化钠 + 盐酸奎宁混合物,无论是在所有神经元中平均还是在氯化钠或蔗糖最佳细胞的亚组中平均,混合物引起的反应频率与单独呈现MEC时引起的反应频率没有差异。此外,混合物反应的跨神经元模式(ANP)与MEC的模式相似。(摘要截断于250字)

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