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[Paradoxical vagal effects on the cardiac rhythm in cats].

S S Grigorian, O G Baklavadzhian, S M Minasian, Ts I Adamian, E S Gevorkian, S G Sarkisian

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Abstract

Effects of single, double, and rhythmic stimulation upon hypothalamic neurons responding to the 1st excitatory phase of lateral vestibular nucleus stimulation, were studied. The data obtained show that activation of some hypothalamic neurons following stimulation of the lateral vestibular nucleus has a monosynaptic character. The findings suggest that ascending afferents from the lateral vestibular nucleus to the hypothalamus pass via oligo- as well as polysynaptic pathways.

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What this paper is about

Effects of single, double, and rhythmic stimulation upon hypothalamic neurons responding to the 1st excitatory phase of lateral vestibular nucleus stimulation, were studied. The data obtained show that activation of some hypothalamic neurons following stimulation of the lateral vestibular nucleus has a monosynaptic character. The findings suggest that ascending afferents from the lateral vestibular nucleus to the hypothalamus pass via oligo- as well as polysynaptic pathways.

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Available abstract

Effects of single, double, and rhythmic stimulation upon hypothalamic neurons responding to the 1st excitatory phase of lateral vestibular nucleus stimulation, were studied. The data obtained show that activation of some hypothalamic neurons following stimulation of the lateral vestibular nucleus has a monosynaptic character. The findings suggest that ascending afferents from the lateral vestibular nucleus to the hypothalamus pass via oligo- as well as polysynaptic pathways.

Key concepts: Vestibular system, Vestibular nuclei, Stimulation, Neuroscience, Nucleus, Medial vestibular nucleus, Excitatory postsynaptic potential, Lateral vestibular nucleus

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[Paradoxical vagal effects on the cardiac rhythm in cats]. — Research Paper | ScholarLens