首页> 外文期刊>Journal of Neurophysiology >Taste responses of neurons of the hamster solitary nucleus are enhanced by lateral hypothalamic stimulation.
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Taste responses of neurons of the hamster solitary nucleus are enhanced by lateral hypothalamic stimulation.

机译:下丘脑外侧刺激增强了仓鼠单核神经元的味觉反应。

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Gustatory responses in the brain stem are modifiable by several physiological factors, including blood insulin and glucose, intraduodenal lipids, gastric distension, and learning, although the neural substrates for these modulatory effects are not known. Stimulation of the lateral hypothalamus (LH) produces increases in food intake and alterations in taste preference behavior, whereas damage to this area has opposite effects. In the present study, we investigated the effects of LH stimulation on the neural activity of taste-responsive cells in the nucleus of the solitary tract (NST) of the hamster. Bipolar stimulating electrodes were bilaterally implanted in the LH, and the responses of 99 neurons in the NST, which were first characterized for their taste sensitivities, were tested for their response to both ipsilateral and contralateral LH stimulation. Half of the taste-responsive cells in the NST (49/99) were modulated by LH stimulation. Contralateral stimulation was more often effective (41 cells) than ipsilateral (13 cells) and always excitatory; 10 cells were excited bilaterally. Six cells were inhibited by ipsilateral stimulation. A subset of these cells (n = 13) was examined for the effects of microinjection of DL-homocysteic acid (DLH), a glutamate receptor agonist, into the LH. The effects of electrical stimulation were completely mimicked by DLH, indicating that cell somata in and around the LH are responsible for these effects. Other cells (n = 14) were tested for the effects of electrical stimulation of the LH on the responses to stimulation of the tongue with 0.032 M sucrose, NaCl, and quinine hydrochloride, and 0.0032 M citric acid. Responses to taste stimuli were more than doubled by the excitatory influence of the LH. These data show that the LH, in addition to its role in feeding and metabolism, exerts descending control over the processing of gustatory information through the brain stem.
机译:尽管尚不清楚这些调节作用的神经底物,但脑干中的味觉反应可通过多种生理因素进行调节,包括血液胰岛素和葡萄糖,十二指肠内脂质,胃扩张和学习。刺激下丘脑外侧(LH)会增加食物摄入量并改变口味偏好行为,而对该区域的损害则具有相反的作用。在本研究中,我们调查了LH刺激对仓鼠孤立道(NST)核中味觉应答细胞神经活动的影响。将双极刺激电极双边植入LH中,首先对NST中99个神经元的响应进行了测试,这些神经元首先以其味觉敏感性为特征,并测试了它们对同侧和对侧LH刺激的响应。 NH(49/99)中一半的味觉反应细胞受到LH刺激的调节。对侧刺激比同侧(13个细胞)更有效(41个细胞),并且总是兴奋性的。双侧激发10个细胞。同侧刺激抑制了六个细胞。检查了这些细胞的一部分(n = 13)对谷氨酸受体激动剂DL同型半胱氨酸(DLH)的微注射作用。 DLH完全模仿了电刺激的作用,表明LH内和周围的细胞体细胞负责这些作用。测试了其他细胞(n = 14)对LH的电刺激对0.032 M蔗糖,NaCl和奎宁盐酸盐和0.0032 M柠檬酸对舌头刺激的反应的影响。 LH的兴奋作用使对味觉刺激的反应增加了一倍以上。这些数据表明,LH除了在进食和代谢中的作用外,还通过大脑干对味觉信息的处理施加递减控制。

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