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Biomedical subjects

B Wasilewska

Publications and source records attributed to B Wasilewska.

At least 19 recordsLinked to original sources

The neuronal structure of the dorsal nucleus of the lateral geniculate body in the common shrew (Sorex araneus) and the bank vole (Clethrionomys glareolus): Golgi and Nissl studies.

The topography and neuronal structure of the dorsal nucleus of the lateral geniculate body (GLd) of the common shrew and the bank vole are similar. The lateral geniculate body of both the species examined has a homogeneous structure and no observable cytoarchitectonic lamination. On the basis of the shape of the dendritic arbours as well as the pattern of dendritic arborisations the following two types of neurons were distinguished. Type I "bushy" neurons that have multipolar or round perikarya (common shrew perikarya 9-12 microm, bank vole perikarya 10-13 microm), with 4-6 short thick dendritic trunks that subdivide into many bush-like branches. The dendritic trunks are smooth, in contrast to the distal branches, which are covered with numerous spine-like protrusions of different lengths and forms. An axon emerges from the soma, sometimes very close to one of the primary dendrites. The type I neurons are typically projection cells that send their axons to the primary visual cortex. These neurons predominate in the GLd of both species. Type II neurons, which have an elongated soma with primary dendrites arising from opposite poles of the perikaryon (common shrew perikarya 8-10 microm, bank vole perikarya 9-11 microm). The dendritic arbours of these cells are less extensive and their dendrites have fewer spines than those of the type I neurons. Axons were seldom observed. The type II neurons are presumably interneurons and are definitely less numerous than the type I neurons.

Animals↗

The neuronal structure of the preoptic area in the mole and the rabbit: Golgi and Nissl studies.

The present studies were carried out on the brains of the adult mole and rabbit. The preparations were made by means of the Golgi technique and the Nissl method. Two types of neurons were distinguished in the preoptic area (POA) of both species: bipolar and multipolar. The bipolar neurons have oval, fusiform or round perikarya and two dendritic trunks arising from the opposite poles of the cell body. The dendrites bifurcate once or twice. The dendritic branches have swellings, single spine-like and filiform processes. The multipolar neurons usually have triangular and quadrangular perikarya and from 3 to 5 dendritic trunks. The dendrites of the mole neurons branch sparsely, whereas the dendrites of the rabbit neurons display 2 or 3 divisions. On the dendritic branches varicosities and different protuberances were observed. The general morphology of the bipolar and multipolar neurons is similar in the mammals studied, although the neurons of the rabbit POA display a more complicated structure. Their dendritic branches show more divisions and possess more swellings and different processes than the dendrites of the neurons of the mole POA. Furthermore, of the multipolar neurons only the dendrites in POA of the rabbit were observed to have a rosary-like beaded appearance.

Animals↗

Types of neurons of the claustrum in the rabbit--Nissl, Klüver-Barrera and Golgi studies.

The studies were carried out on the claustrum of 8 adult rabbits. Four types of neurons were distinguished: 1. Multipolar neurons, which have dendritic trunks either with conus (multipolar polygonal perikarya) or without conus (multipolar rounded perikarya). Both subdivisions of the multipolar neurons have 3-6 dendritic trunks. Only some branches of these trunks have spines. An axon emerges mainly from the cell body, rarely from the initial part of the dendritic trunk. 2. Bipolar neurons with fusiform or rounded perikarya; they have two dendrites covered with spines. An axon originates directly from the cell body or from one of the dendritic trunks. 3. Triangular neurons, which have three dendritic branches with spines. An axon emerges directly from the soma, often near the primary dendritic trunk. 4. Pear-shaped neurons with one or two dendritic trunks arise from one pole of the cell body and with an axon that originates from the opposite side of the perikaryon. The dendrites are covered with spines.

Animals↗

[Evaluation of the value of cytological examination of group III, IV or V by comparison of histological examination results].

The agreement was studied of cytological examination of group III, IV, and V with the results of histopathological examination. The material consisted of 289 female patients who were referred to the department with the results of examinations carried out in cytological counselling centres outside the department. The attention was paid to age and obstetric history of the patients. The agreement of results was found in half the total number of cases. In 43.5% cytological evaluation was falsely positive, and in 7% falsely negative. The greatest variety of disease progression was found in the III cytological group.

Adult↗

[Proteolytic activity of blood plasma and hemolysed blood in dogs after acute chlorophos poisoning].

On dogs under Eunarkon anesthesia (0,03 ml Eunarkon/kg body weight) after one intramuscular lethal injection of phoschlor (500 mg/lg body weight = LD100) the proteolytic activity (APR) was estimated in the blood plasma at pH 3,5-APR-3,5 and in the hemolyzed blood at pH-7,4-APR-7,4. The results showed that heavy poisoning with phoschlor led to metabolic disturbances in the proteolytic system of the blood plasma and blood, the expression of which was increasing in the course of time a statistically important increase (alpha = 0,001) of APR-3,5 and APR-7,4. APR induction in blood is not a result of direct activation of enzymes by pesticides. It takes place outside the circulation system.

Acute Disease↗