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Biomedical subjects

P G Bogach

Publications and source records attributed to P G Bogach.

At least 19 recordsLinked to original sources

Functional significance of different amygdalar areas in performance of instrumental conditioned alimentary reflexes in rats.

Bilateral lesions of the basolateral amygdala caused facilitation of instrumental alimentary conditioned reflexes while bilateral cortico-medial amygdala damage produced inhibition of conditioned responses. The most rapid learning was in rats after basolateral lesions whereas the cortico-medial rats required more trials to criterion than controls. In basolateral rats the largest number of intertrial responses were found, while cortico-medial rats had a small number of ITR in criterion sessions. Thus, the cortico-medial amygdala was concerned with the excitatory system and the basolateral amygdala with the inhibitory system of the rat forebrain. The results of combined unilateral lesions of basolateral and cortico-medial amygdala in each hemisphere suggest that in healthy animals the inhibitory influence of the former was stronger and overlapped or regulated the excitatory action of the latter. Our evidence suggests the existence of two antagonistic systems in the rat amygdala which play different roles in conditioning.

Amygdala↗

[A study of the contractions of a model of smooth muscle in an automated analog of Wiener's medium].

The simplest structure and the main moments of smooth muscle contractile activity are presented in terms of theory of the automata and logarithmic language ALGOL-60, the separate smooth muscle cell thus corresponding to the Moor automaton, and the muscle tissue -- to the combination of automata forming the cell automatic analog of excitable Winner's medium. Functioning of the automatic smooth muscle model was studied on "Mir-2" and "M 220-M" computers. The smooth muscle cells are dissimilar by the duration of refractory period, period of stimulation, ability of spontaneous activity, or excitability. The data obtained aid to understanding of nature of myogenic automation in the smooth muscles and of spreading of excitation along the smooth muscle fibers.

Computers↗

[Electrical reaction of olfactory structure and the amygdaloid complex of the brain of dogs in a paradoxical stage of sleep].

Electrical activity of the olfactory bulb, olfactory tubercle amygdala, hippocampus, hypothalamus and neocortex during physiological sleep was studied in chronic experiments in unanesthetized unrestrained dogs;A synchronous high-frequency sinusoidal rhythm of 36-42 Hz was found in the amygdala and olfactory structures in the paradoxical phase of sleepmthis olfacto-amygdaloid rhythm, unlike that of aroused animals, was not the result of olfactory stimulation and persisted in dogs with trachael breathing; Its generation is probably of central origin; A comparison of the dynamics of this electrical activity with somatic, autonomic and teeg-correlates of sleep gives reasons to regard the olfacto-amygdaloid rhythm of 36-42 Hz as a specific EEG-correlate of the paradoxical sleep stage in dogs

Amygdala↗