海马体在条件反射活动中的作用及大半球外壳功能状态的形成

O. Lutsenko
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引用次数: 0

摘要

这项研究是在狗身上进行的,在海马的腹侧和背侧以立体定向的方式植入深度电极。我们研究了高频率(60脉冲/秒)和低频率(4脉冲/秒)电流刺激这些结构对条件反射活动和大脑皮层功能状态形成的影响。结果表明,海马不同结构的刺激对皮质细胞的音调有不同的影响。这种影响的性质取决于用于刺激的电流的频率。问题的表述。分析最近的研究和出版物。有许多科学论文致力于研究海马体在调节各种身体功能中的作用(Giuliana, Caronia, Jennifer, Wilcoxon等)。, 2010;Purvis, EM, O'Donnelly, JC等人,2020)。一些作者认为海马体是一个多功能结构:内脏功能和嗅觉、记忆和学习的中心,情绪和动机的调节器,它用于定向反射和注意力,感觉分析(Chaychenko, g.m., 1984;Wiskott L, Rasch MJ, Kempermann G.等。2006)。但目前还没有足够可靠的数据表明,在电刺激海马体各种结构的条件下,该结构在条件反射活动中的作用。研究发现,在条件反射形成过程中,当海马体受到弱电流刺激时,条件反射的固定时间明显缩短,即记忆和学习过程加快(Gray, j.a., 1983;Diana, X Yu, Maria, C Marchetto, Fred, H Gage, 2014;Nader, K, Krysiak, A, Beroun, A等等。, 2019;Whitfield, JF, Chakravarthy, BR。, 2009)。颞叶连接的机制已被证明在调节皮质张力中起重要作用。如果对条件反射形成过程中大半球皮层功能状态的形成问题进行了或多或少的研究,那么对这种现象对抑制过程特性的依赖问题的研究就不够充分(William, D Jones, Sarah, M Guadiana, Elizabeth, A Grove, 2019)。此外,各种皮层下结构,特别是海马体在调节大半球皮层音调中的作用至今尚未明确。目的探讨在电刺激海马各结构的条件下,大半球皮层功能状态形成的特征
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The Role of The Hippocampus in Conditionally Reflective Activity and The Formation of The Functional State of The Crust of The Large Hemisphere
The studies were carried out on dogs, which were stereotactically implanted with depth electrodes in the ventral and dorsal parts of the hippocampus. We studied the effect of stimulation of these structures with an electric current of high (60 pulses/sec) and low (4 pulses/sec) frequencies on conditional reflex activity and the formation of the functional state of the cerebral cortex. It was revealed that stimulation of different structures of the hippocampus has a different effect on the tone of cortex cells. The nature of this influence depends on the frequency of the electric current, which was used to stimulate. Formulation of the problem. Analysis of recent research and publications. There are a number of scientific papers devoted to the study of the role of the hippocampus in the regulation of various body functions (Giuliana, Caronia, Jennifer, Wilcoxon, et all., 2010; Purvis, EM, O'Donnelly, JC et all, 2020). Some authors believe that the hippocampus is a poly-functional structure: the center of visceral functions and sense of smell, memory, and learning, the regulator of emotions and motivations, it is used for orientation reflexes and attention, sensory analysis (Chaychenko, G.M., 1984; Wiskott L, Rasch MJ, Kempermann G. Wiskott L, Rasch MJ, Kempermann G. et all. 2006). But today there is not enough reliable data on the role of this structure in conditioned reflex activity under conditions of electrical stimulation of various structures of the hippocampus. It was found that when the hippocampus is stimulated by a weak electric current during the formation of conditioned reflexes, the fixation time of the reflex is significantly reduced, ie the processes of memorization and learning are accelerated (Gray, J.A., 1983; Diana, X Yu, Maria, C Marchetto, Fred, H Gage, 2014; Nader, K, Krysiak A, Beroun, A, et all., 2019; Whitfield, JF, Chakravarthy, BR., 2009). The mechanism of temporal connections has been shown to play an important role in regulating cortical tone. If the question of the formation of the functional state of the cortex of the large hemispheres during the formation of conditioned reflexes is more or less studied, then the question of the dependence of this phenomenon on the properties of the inhibitory process is insufficiently studied (William, D Jones, Sarah, M Guadiana, Elizabeth, A Grove, 2019). In addition, the role of various subcortical structures and, in particular, the hippocampus in the regulation of the tone of the cortex of the large hemispheres has not been clarified to date. The purpose to establish features of the formation of a functional condition of the bark of large hemispheres in the conditions of electric stimulation of various structures of a hippocampus
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