PubMed Health⌕ Search

Biomedical subjects

S V Ivlev

Publications and source records attributed to S V Ivlev.

6 recordsLinked to original sources

Effect of denervation on neuromuscular transmission and glutamate sensitivity of the locust wing muscle fibers.

Changes in neuromuscular transmission and ultrastructure of synapses taking place after motor nerve cutting during 20 subsequent days were studied on the wing muscle of the locust (muscle 120) using intracellular recording from phasic fibres. The membrane potential (MP) and the excitatory postsynaptic potential (EPSP) showed practically no changes in comparison with the controls through day 8 after denervation. After the development of a neuromuscular transmission block between days 8 and 14, EPSP and miniature EPSP (MEPSP) disappeared, and the MP level somewhat decreased in comparison with controls. MEPSP frequency and amplitude increased in the first days after denervation. The sensitivity to glutaminic acid (Glu) gradually increased after nerve cutting, reached maximum on day 8 and remained at the same level subsequently (threshold concentration 0.003 mmol/l vs 0.3 mmol/l in the control). At the same time, the maximum amplitude of depolarization produced by Glu increased 1.5-2 times but slightly decreased subsequently. Beginning from day 4 after denervation synaptic vesicles began forming separate groups. On day 14 vesicles were grouped in macroconglomerates at a distance from the presynaptic membrane. On day 20 no axon profiles could be detected. The results suggest a similarity of denervation changes in insect wing and leg muscles.

Animals↗

[Motor unit activity of distal cat limb muscles induced by bipolar microstimulation of the postcruciate region of the cortex].

Bipolar intracortical microstimulation at a depth of 1.5-2.2 mm, evoked within a very narrow zone of the postcruciate cortex a phasic discharge of motor units in forepaw m. flexor digitorum profundus. The stimulating trains consisting of 7-8 pulses with frequency of 300 Hz were the shortest for initiation of the motor unit response. The stretching of the muscle produced a facilitation of intracortical stimulating effects.

Animals↗

[Temperature-evoked long-term potentiation in hippocampal slices].

The effect of temperature changes on the activity of CA1 pyramidal cells has been investigated on completely submerged rat hippocampal slices. Fast and slow increase in the temperature from 24-28 to 37-38 degrees C decreased the amplitude of population spikes (PS), but increased the number of active pyramidal cells. The decrease in PS is more evident from 32 to 37 degrees C. After cooling to 24-28 degrees C, a long (more than 30 min) and considerable (up to 12%) increase of PS was observed. Increasing the temperature from 24-28 to 37-38 degrees C does not affect double facilitation, nor the maintenance of a long post-tetanic potentiation. It is suggested that the mechanism of temperature-induced long-term potentiation is similar to that of a long post-tetanic potentiation.

Action Potentials↗