M. N. Zhadin
Russian Academy of Sciences
17 Papers
50 Citations
M. N. Zhadin is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Acetylcholine & Cortex (anatomy). The author has an hindex of 4, co-authored 17 publications.
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Papers
Electrophysiological correlates of habituation and conditioning
TL;DR: During habituation of the animal to the experimental situation there is a gradual decrease in the mean coefficient of correlation between the EEG of different cortical points, accompanied by a decreases in the degree of representation of frequencies of the theta-band in spectral and coherent functions.
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Spontaneous Activity of Cortical Neurons in Vitro and Its Regulation by Acetylcholine
TL;DR: Studies of living sensorimotor cortex slices showed that activatory spike responses to microiontophoretic application of acetylcholine depend on the spontaneous activity frequency of the neurons, and it is suggested that these changes result from regulation of K+ permeability.
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Responses of cortical neurons to microiontophoretic application of acetylcholine to their dendrites
TL;DR: Spike responses of neurons to the microiontophoretic application of acetylcholine to the soma and the dendrites were studied and it is suggested that intracellular chemical signaling is involved in the propagation of cholinergic excitation via dendrite.
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Levels of spontaneous activity and spike responses of cortical neurons to local administration of excitatory amino acids to their dendrites and bodies.
TL;DR: Studies of cortical cortex slices showed that spontaneous neuron activity depended on the conditions of transmission of excitation from dendrites to the body.
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•Journal Article
Spontaneous spike activity of neurons of the isolated cerebral cortex in the rabbit
TL;DR: Using the method of correlation analysis, spontaneous impulse activity of isolated cortex (IC) was studied in late terms of isolation and it was shown that most of IC neurones had a burst-group type of activity characterized by alternation of irregular long periods of activation and similarly irregular prolonged periods of inhibition.
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