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Modulation of neuronal impulse activity of the anterior hypothalamus as a functional basis of the mechanisms underlying hypothalamic control

机译:下丘脑神经冲动活动的调制,作为下丘脑控制机制的功能基础

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We examined the neuronal activity of hypothalamic neurons in acute experiments on cats under ketamine anesthesia. Using glass microelectrodes, we extracellularly recorded the impulse activity (IA) of neurons of the anterior hypothalamus in the absence of controlled influences (background IA, BIA) and after stimulation of evolutionary heterogeneous zones of the brain cortex projecting to the hypothalamus (hippocampal CA3 area, pyriform, cingular, and proreal gyri). Electrical 5-sec-long stimuli were applied with frequencies of 12, 30, or 100 sec?1. In another experimental series, we recorded changes in the IA of hypothalamic neurons induced by visceral stimuli (heating or cooling by 7°C of the foot pad, cooling of the body of the animal, and infusions of 5% glucose, 0.2% NaCl, 3.0% NaCl, or phenylephrine in the carotid artery), modeling in such a way shifts of the constants of homeostasis within physiological limits. We also compared the parameters of neuronal BIA and stimulation-influenced IA in equal epochs of the analysis and classified the types of BIA. About 50% of the cells of the total studied sampling of hypothalamic neurons responded by a considerable modulation of their BIA with a significant change in the frequency in the course of and after stimulations of the above-mentioned modalities. In some neurons after cortical or visceral stimulation, a significant transformation of the temporal structure of the IA with no changes in the mean frequency occurred. We hypothesize that stimulation-induced transformation of the IA pattern with preservation of the mean discharge frequency can be one of the modes of encoding of information necessary for triggering of one efferent reaction or another, which are controlled by the hypothalamus. Examination of the BIA parameters of subcortical neurons, as well as comparison of the parameters of such an activity with the localization of cells and with the modality of stimulation that leads to modification of the IA, should allow one to reveal reasons for the formation and modification of the IA on neurons of the anterior hypothalamus. Since functional peculiarities of the neurons correlate with their BIA pattern, such data can provide an insight into the functional bases of the neurophysiological mechanisms underlying regulatory functions of the hypothalamus.
机译:我们在氯胺酮麻醉下的猫的急性实验中检查了下丘脑神经元的神经元活性。使用玻璃微电极,我们在没有受控影响的情况下(背景IA,BIA)以及刺激了投射到下丘脑的大脑皮质进化异质区域(海马CA3区域)后,在细胞外记录了下丘脑前神经元的脉冲活动(IA)。 ,梨状,扣带状和前回状)。施加5秒长的电刺激,频率为12、30或100秒-1。在另一个实验系列中,我们记录了由内脏刺激引起的下丘脑神经元IA的变化(由脚垫的7°C加热或冷却,动物身体的冷却以及5%葡萄糖,0.2%NaCl, 3.0%NaCl,或在颈动脉中的去氧肾上腺素)以这种方式建模,使体内稳态常数在生理范围内移动。我们还在相同的分析时期比较了神经元BIA和受刺激影响的IA的参数,并对BIA的类型进行了分类。在下丘脑神经元的全部研究样本中,约有50%的细胞通过对其BIA的显着调节来响应,并且在刺激上述模态的过程中和刺激后,其频率发生了显着变化。在皮质或内脏刺激后的某些神经元中,IA的时间结构发生了显着变化,而平均频率没有变化。我们假设保持平均放电频率的刺激诱导的IA模式转换可能是触发下一个丘脑控制的一种或多种传出反应所必需的信息编码方式之一。检查皮层下神经元的BIA参数,以及将这种活动的参数与细胞定位以及导致IA改变的刺激方式进行比较,应该可以揭示形成和改变的原因IA对下丘脑前神经元的影响。由于神经元的功能特性与其BIA模式相关,因此此类数据可以洞悉下丘脑调节功能所依据的神经生理机制的功能基础。

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