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NO-dependent mechanisms of the amygdalofugal modulation of the hypothalamus vegetative neurons

机译:丘脑植物神经元的杏仁植物植物神经元的无依赖机制

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摘要

In neurophysiological and histochemical experiments on rats, amygdalo-fugal modulation of cells within NO-producing areas of the hypothalamus was studied. Electrical stimulation of the medial area of the central nucleus caused obvious excitatory neuronal reactions within the medial part of the paraventricular nucleus and rostral portion of the lateral hypothalamic area. The observed amygdala-induced neuronal responses were enhanced after i.v. N-nitro-1-arginine methyl ester (L-NAME, 10 mg/kg). The nistochemical study revealed that the central nucleus stimulation caused an increase in number and optical density of the NADPH-d-positive cells within the parvicellular zone of the paraventricular nucleus and in the medial part of the lateral hypothalamic area. The NO-producing cells within the ventrolateral part of the lateral hypothalamic area were inhibited. The described phenomenon may underlie the amygdalo-fugae modulation of autonomic outflow. nauk
机译:在大鼠神经生理学和组织化学实验中,研究了在下丘脑的不产生区域内的细胞asygdalo-fugal调节。 中央核的内侧区域的电刺激导致旁注下丘脑的内侧部分内的明显兴奋性神经元反应和侧面下丘脑区域的升降部分。 I.v后,观察到的杏仁达诱导的神经元反应增强。 N-Nitro-1-精氨酸甲酯(L名,10mg / kg)。 Nistochemical的研究表明,中央核刺激导致NADPH-D阳性细胞的数量和光密度增加,椎间盘状细胞核的静脉区域内的NADPH-D阳性细胞和侧面下丘脑区域的内侧部分。 抑制了侧下丘脑区域的腹侧部分内的不产生的细胞。 所描述的现象可以提出自主流出的Amygdalo-Fugae调节。 Nauk.

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