Search PubMed⌕ Search

Biomedical subjects

L B Verbitskaia

Publications and source records attributed to L B Verbitskaia.

26 records · Page 2Linked to original sources

[Cytoarchitectonics of the vestibular nucleic of the brain of the dolphin (Delphinus delphis)].

Specific features of the structure of the vestibular complex of Cetaceans correlating with specific features of the structural functional organization of these representatives of aquatic mammals were detected in a cytoarchitectonic investigation of the topography and strucutral organization of nuclei of the vestibular complex performed in Delphinus delphis and compared with the organization of the corresponding structures of the brain of man and chimpanzee.

Animals↗

[Ultrastructural changes in neurons of the arcuate nucleus-median eminence complex in rats irradiated with carbon ions and gamma rays].

Ultrastructural changes in the arcuate nucleus and medial eminence area of rats were examined 5 weeks after their exposure to accelerated carbon ions with an energy of 300 MeV/nuclon and 60Co gamma-rays at a dose of 2.0 Gy. In carbon-irradiated animals the ultrastructural changes of arcuate nucleus neurons, their processes and synapses were more significant and diversified than in gamma-irradiated rats.

Animals↗

[Ultrastructural changes in the rat cerebellar cortex in the remote periods after exposure to accelerated carbon ions].

The cerebellar cortex of rats irradiated with carbon ion fluxes of 320 Mev/nuclon and 60Co gamma-radiation was examined by light and electron microscopy 1, 3 or 6 months after exposure. Carbon ions induced the greatest pathomorphological changes. A month after exposure the changes were diffuse and reversible while 3 and, especially, 6 months after irradiation they were focal disorders, a large portion of which being irreversible. 3 and 6 months after exposure some structures of the cerebellar cortex showed destructive while others exhibited reparative changes. Structural disorders in various nerve and glial cells were of different type. Disorders of the Purkinje cells were of the dark type and those of adjacent Bergmann glial cells of the light type. In the granular layer, neurons showed light type changes and adjacent oligodendrocytes, a densely packed karyo- and cytoplasm and a higher osmiophilia. It can be assumed that the above changes are to maintain disordered neuronal functions, including cell interactions. Study of time course variations in the neuronal and glial ultrastructure of the cerebellar cortex of irradiated animals shows an increase of destructive changes with time. This investigation has demonstrated that CNS cells may be damaged long after exposure even to small fluxes of heavy charged particles.

Animals↗