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V M Kozhanov

Publications and source records attributed to V M Kozhanov.

At least 19 recordsLinked to original sources

Comparison of the topology and growth rules of motoneuronal dendrites.

The complexity, shape, and branching modes of the dendrites of spinal motoneurons were compared in cat, rat, and frog using topological analysis and growth models. The complexity of motoneuronal dendrites, measured as the mean number of terminal segments, varied significantly among samples and was related to contractile properties of innervated motor units. Despite this variation, all mature motoneurons having a mean number of terminal segments per dendrite greater than ten (up to 24.3) exhibited a narrow range of values of coefficients describing the symmetry of tree shapes (0.42-0.47). This implies low variability in the topological shape of motoneuronal dendrites of different animals. This similarity of tree shapes proved to be a result of the similarity of growth rules. The growth of the dendrites could be described to a first approximation by a two-parameter (Q and S) model called the QS model and by a multitype Markovian model. The estimation of parameters of the QS model, in which parameter Q is related to the probability of branching of intermediate segments, revealed that Q was equal or close to 0, implying that branching of dendrites is restricted to terminal segments. The estimates of the parameter S, which describes whether the probability of branching increases (S < 0) or decreases (S > 0) exponentially with segment order, were positive. This was in agreement with the results of estimation of probabilities of branching provided by the Markovian model, which showed that the branching probabilities decreased with segment order in an exponential manner in most of the neurons studied. The QS and Markovian models involve different assumptions about the sequence and timing of branching events, and selection of the best model can provide insight into details of dendritic outgrowth. Extensive simulation of tree outgrowth using a Markovian model revealed significant differences between stimulated trees and real dendrites, particularly with regard to variability of the number of terminals and to symmetry. In contrast, the QS model provided a good fit to the mean values and standard deviations of basic topological parameters. This model is adequate to describe the shape of mature motoneuronal dendrites. It implies that dendritic branches have many opportunities to bifurcate during the whole time of development and that bifurcating potency of a branch is a function of the number and position of other branches of that dendrite. Combined with analysis of metrical properties such as lengths of segments, the QS model can assist in a quantitative analysis of development and plasticity.

Animals↗

Quantal analysis based on spectral methods.

A method for calculating quantal size based on spectral analysis of postsynaptic potential (PSP) amplitude distributions was developed and tested by Monte-Carlo techniques. It was combined with a test to reveal the bias of the estimate of quantal size and to determine whether the peaks in amplitude distributions reflect quantal release or a sampling artifact. Spectral density was computed using fast Fourier transformation after subtraction of a fitted polynomial from the probability density function. The method overestimated quantal size for values less than two standard deviations of noise, indicating that those estimates as well as estimates of quantal size computed for examples of non-quantal distributions are not reliable. This was the case for 34 of 36 sets of sensorimotor excitatory PSPs of the frog, suggesting that most values of the quanta in synapses between primary fibres and lumbar motoneurons are smaller than 70-90 microV.

Animals↗

Modeling of the quantal release at interneuronal synapses: analysis of permissible values of model moments.

A theoretical study of effects of the different factors on fluctuation of post-synaptic potential (PSP) amplitudes was undertaken, using computation of regions of permissible values (RPV) of the ratio between the variance and the mean number of the quanta released (R1) and the ratio between the third moment and the variance (R2). The RPVs of these indexes for the binomial model were compared with regions determined for a number of models incorporating several factors. It has been shown that the involvement of temporal non-uniformity of transmitter release probability, decremental spreading of potentials along dendrites, and failure of spike propagation give the values of skewness index R2 less, compared to the binomial model. Simultaneously, a number of other factors, especially spatial non-uniformity of release probabilities in single release sites, would give amplitude histograms with high positive values of the index. The values of R1 and R2, calculated for 21 samples of sensorimotor EPSP amplitudes, were biased from RPV of these parameters constructed for the binomial model. The scattergram of R1 and R2 can be explained by the presence of two kinds of contacts which release quantum with different probabilities. The same was true for the beta-model based on the assumption that probabilities of quantal release are a sample of values of random variable that has beta-distribution. From analysis of the distribution of individual release probabilities, obtained from evaluation of beta-model parameters, is concluded that a greater part of boutons in the sensorimotor synapses release transmitter with very low probabilities, there being, however, a few boutons with probabilities close to 1.

Animals↗

Sensorimotor connections in the lumbar spinal cord of the young rat: a morphological study.

A morphological investigation of sensorimotor connections was performed on the isolated lumbar spinal cord of 8-15-day-old rats using horseradish peroxidase labelling techniques. Horseradish peroxidase was applied to the filaments of dorsal and ventral roots and injected intracellularly into motoneurons. The labelled afferent fibres and their contacts on motoneurons were examined under a light microscope. Numerous afferent collaterals entered the lateral motor nuclei. In the medial motor nuclei a few afferent collaterals were found. Some fibres were visible passing through the ventral commissure. The number of boutons per afferent collateral in the motor nuclei was 40-60. A single terminal branch contained one to five boutons (average 1.5). Predominating axodendritic and apparent axosomatic contacts were found between afferent fibres and motoneurons belonging to the lateral motor nuclei. The contacting boutons were both terminaux and en passant. As a rule, the sensorimotor connection involved dorsally and rostrocaudally directed dendrites of the first to sixth orders.

Animals↗

Relation between structural and release parameters at the young rat sensorimotor connection.

The present work was carried out on isolated spinal cords of young rats. The aim of this study was the combined morphological and electrophysiological investigation of sensorimotor connections labelled with horseradish peroxidase and the evaluation of the relationship between their structural and functional properties. Sensorimotor contacts were widely distributed along the postsynaptic cell: from the soma and juxtasomatic dendrites to distal dendrites. The number of contacting boutons in the connection of a single afferent fibre and an individual motoneuron was about 10. The amplitude fluctuation patterns of the unitary and the minimal excitatory postsynaptic potentials of the motoneurons fitted with predictions based on a binomial model. A close correspondence was found between the estimated number of binomial release sites, n, and the number of contacting boutons. The calculated size of the quantal potential was about 100 microV. The difference in the organization of sensorimotor connections of the young rat and the frog is discussed.

Afferent Pathways↗

[Morphologic and quantum characteristics of sensomotor neuron synapses in isolated rat spinal cord].

The structural-functional relationships of sensorimotor connections were studied in isolated lumbar cord segments of 7-14 day-old rats. Individual motoneurons were found to have synaptic contacts only with a single collateral of the afferent fibre. The number of contacting boutons gained 10. The n parameter of the binomial model was established to reflect the number of contacts at the sensorimotor connection. The analysis of sensorimotor EPSPs by convolution with two binomial distributions has shown that sites of the transmitter release were different in their probability (efficiency) of response to nerve impulse.

Animals↗

[Morphological bases of motor neuron interaction in the isolated spinal cord of rat pups studied with horseradish peroxidase].

The structure of connections of the lumbar motoneurons was investigated in the isolated spinal cord of young rats by the HRP methods. HRP was applied to the ventral roots and injected intracellularly into the motoneurons. The light microscopic study has shown that dendrodendritic, dendrosomatic and somatosomatic contacts between motoneurons might be established. Recurrent collaterals of motor axons were revealed. They were found to form contacts on the motoneuron dendrites and perikarya. The course and terminal arborizations of the ventral root afferent fibre were also described. The obtained morphological data related to electrophysiological analysis of motoneuronal postsynaptic potentials evoked by ventral root stimulation are discussed.

Animals↗

[Mechanisms of motor neuron interaction in the isolated spinal cord of rat pups].

Interactions between lumbar motoneurons were studied by intracellular recording of responses to stimulation of ventral roots and intracellular HRP injection in isolated spinal cord preparations of immature (9-14 days old) rats. Ventral root-evoked electrotonic potentials in individual motoneurons were due to interconnections with few other motoneurons and could not elicit spike potentials. Direct chemical excitatory interactions of motoneurons were also found which may occur via axon collaterals. Differences between individual motoneurons in the mode of responses to ventral root stimulation, probably, depend on their functional specialization.

Action Potentials↗

[Quantal analysis of the postsynaptic potentials in interneuronal synapses: the recovery of the signal from the noise].

Discrete distributions of the elementary EPSP amplitude in the interneuronal synapses of vertebrates were obtained by the maximum likelihood method. The equality of the intervals between values of the computed densities testifies to the quantal nature of the signal. The binomial model approximating the empirical distributions is revealed to be able to distinguish quantal levels of the nerve impulse transmission. These levels are conditioned by the structural organization of the interneuronal connections. Systematical differences between empirical distributions and the model necessitate generalization of the latter.

Animals↗

[An analysis of transmission in the interneuronal synapses using a convolution of binomial distributions].

The convolution of two binomial distributions has been used for the analysis of the discrete distributions of the elementary EPSPs amplitude in the sensorimotor, proprio- and reticulo-motoneuronal synapses of the frog. It is shown that the quantity of the working transmitter release sites is higher than that estimated by the binomial distribution. The probability of the release sites response to the single action potential was unequal. In most sites they did not exceed 0.1-0.3 and were supported on the constant level. The effect on the transmitter release mechanism induced blocking of the release sites. The disturbance of preparation to the transmitter release sharply decreased the probability of the release sites response.

Animals↗

[Synaptic action of vestibular nerve afferents on reticular neurons of the isolated medulla oblongata of the goldfish].

Excitatory post-synaptic potentials (EPSPs) were evoked in reticular neurons of isolated goldfish brian stem by stimulation of the ipsilateral vestibular nerve or by direct intra-axonal activation of single vestibular fibres. Composite EPSPs displayed usually two components. Ca2+-deficient, Mn2+-containing solution abolished the delayed chemical components of EPSPs, but did not affect the short latency responses suggesting dual (electrical-chemical) mode of transmission between some vestibular afferents and reticular neurons.

Animals↗

[Excitatory postsynaptic potentials in motor neurons of rats upon stimulation of individual reticulospinal neurons].

Unit reticulo-motoneuronal EPSPs evoked by extra -- or intracellular stimulation of reticulo-spinal neurons were recorded intracellularly from rat lumbar motoneurons. Reticular neurons with fast conducting axons revealed higher probability of direct effect on motoneurons. Terminals of single reticular neurons to different motoneurons were shown to be widely distributed. Analysis of the time course of average unit EPSPs suggests proximal to soma location of some reticulo-motoneuronal synapses. Amplitude-frequency histograms of the unit EPSPs could be fitted in most cases by Poisson's or binominal distribution, suggesting the quantal nature of transmitter release.

Animals↗

[Synaptic organization of supraspinal control of the propriospinal neurons of the ventral horn of the cat and monkey spinal cord].

In experiments carried out on cats and monkeys synaptic actions evoked in propriospinal interneurons of the upper lumbar segments by reticulo-, vestibulo- and cortico-spinal volleys were investigated by means of intra- and extracellular recording. Propriospinal interneurons identified by antidromic invasion from the fibres of the ventrolateral funiculi were located in different zones of the ventral horn of the upper lumbar segments. In cats a monosynaptic effect could be evoked by a vestibulo- and reticulo-spinal volley. In monkeys monosynaptic brain-stem-propriospinal actions are complemented by cortico-propriospinal monosynaptic connections. The convergence of monosynaptic effects from different supraspinal sources was shown.

Animals↗

[Synaptic effects induced in motor neurons by stimulation of individual propriospinal neurons].

In experiments carried out on cats unitary PSPs evoked in lumbar motoneurons by stimulation of single identified ventral horn propriospinal neurons receiving mono- and polysynaptic inputs from reticular nuclei were recorded by means of the averaging computer. The amplitudes of the unitary proprio-motoneuronal EPSPs and IPSPs were 49.6 +/- +/- 6.0 muV and 28.9 +/- 2.9 muV, respectively. A synaptic delay was 0.34 +/- 0.05 ms. An individual propriospinal cell of the upper lumbar segments can establish monosynaptic articulations with several motoneurons of the lower lumbar segments.

Animals↗