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Biomedical subjects

R Ferres-Torres

Publications and source records attributed to R Ferres-Torres.

At least 55 records · Page 3Linked to original sources

Quantitative development of the subcommissural organ in hypothyroid mice.

The postnatal development of the global volume of the subcommissural organ (SCO) and of the karyometric changes of the ependymocytes in the SCO and the adjacent ventricle is studied in male albino mice aged from 25 to 160 days, and in a hypothyroid group treated with propylthiouracil with and without interruption of the treatment at 35 days. Hypothyroidism produces a decrease of the global volume of the SCO and of the nuclear size of the ependymocytes in the SCO and the adjacent ventricle.

Animals↗

Cortical projections of the nucleus centralis superior and the adjacent reticular tegmentum in the mouse.

After horseradish peroxidase-injections into different cortical areas of the mouse, labeled neurons were observed in the n. centralis superior and in the bilateral adjacent reticular tegmentum, especially in the zone dorsal to the medial lemniscus and the n. reticularis tegmenti pontis. Labeled cells in the n. centralis superior were nearly always concurrent with labeled paramedian cells, the topographical distribution of which was independent of the site of injection.

Animals↗

Morphometric changes in alcoholic mice of neurons of areas 6 and 17 and ependyma of the subcommissural organ.

We have performed a karyometric study of the postnatal development of the subcommissural organ (SOC), the subjacent thalamic ependyma, and the pyramidal neurons of layer V of the motor and visual cortical areas, in alcoholic male albino mice, aged 25-100 days. Ethyl alcohol was added to the drinking water at a concentration of 20%, from birth until the day of sacrifice. Our results show that alcoholism affects the SOC ependyma and the motor cortex, and, apparently, does not affect the ventricular thalamic ependyma and the visual cortex. We suggest a neuroendocrine mechanism to explain the SOC answer, and a functional deprivation to explain the changes in the motor cortex.

Aging↗

Karyometric changes in the development of the medial and lateral preoptic area of the mouse after gonadectomy.

A karyometric study of the medial and the lateral preoptic area of the male albino mouse has been carried out with the aid of a Leitz Image Analysis System (ASM). We have measured nuclear sizes of a control group of sixty mice, aged from the 5th to the 190th day of life. Another group of prepuberally castrated male mice, has been studied at the 25th, 35th, 45th, 55th and 85th postnatal day. The medial and the lateral preoptic area show different development patterns in the control group, and differential effects of castration in these zones were observed. The medial preoptic area, which has frequently been related to changes of sex hormone levels, experiments more important and statistically significant variations than the lateral preoptic area.

Aging↗

Postnatal maturation of nonpyramidal neurons in the visual cortex of the cat.

A Golgi study of nonpyramidal neurons in the visual cortex of kittens aged from 1 to 80 days revealed that different neuronal types undergo a differential sequence of maturation. The earliest nonpyramidal cells to differentiate are large multipolar cells of layers 3-5, which appear around birth and whose axons gradually establish long lateral, intracortical connections. They are followed by spiny stellate cells of layer 4, which appear in the first postnatal, week, and by neuroglioform cells in layers 4 and 5, a cell type which at 10 days displays a highly differentiated axonal plexus. In general, most classes of local axon cells can be identified by the end of the second week, though still possessing a very immature morphology, the axonal-tuft cells of layer 2 maturing later, in the third week. With some exceptions, most neurons exhibit an adultlike axonal arborization by the end of the first month; however, immature chandelier terminals are observed until the 40th day, and in kittens aged from 30 to 80 days, the vertical terminal segments of chandelier cells are larger than in the adult. Some neuronal types seem to present an exuberant growth of axonal fibers in the late postnatal period and a subsequent reduction up to the adult stage.

Animals↗

A type of apparently axonless granule cell in the cat auditory cortex.

In the auditory areas (A I, A II and the posterior ectosylvian gyrus) of the cat, unusually small granule cells apparently lacking an axon are described. They are exclusively located in layer 2/3 and sometimes impregnate in groups of 4 or 5, being probably quite frequent. Some morphological differences between granule cells of young and adult cats are noted.

Aging↗

Karyometric changes in the subcommissural organ of male mice after gonadectomy.

A karyometric study of the ependymal cells of the subcommissural organ (SCO) was made in male albino mice castrated at 20 days and examined at 25, 35, 45, 55 and 85 days of life, and in control groups of the respective ages. The values of the nuclear areas and perimeters of SCO cells as well as those of the global volume of the SCO are significantly lower in the experimental groups, and the nuclear membrane shows less invaginations. No changes are observed after gonadectomy in the subjacent thalamic ependyma.

Androgens↗

Development of the subcommissural organ in the albino mouse (a Golgi study).

The Subcommissural organ (SCO) of the albino mouse has been examined using the Golgi method and stained paraffin sections from embryonic age E 11 up to adulthood. The SCO cells can first be distinguished from adjacent structures at E 14, but are not fully differentiated until the age of 6 postnatal weeks. The first signs of cytological maturation occur during early postnatal life with a progressive invagination of the nuclear membrane and a transformation of the peripheral processes, which involute or are lost in adulthood. The hypendyma appears at the age of three weeks. A third type of cell is described which is interpreted as a transitional element between ependymal and hypendymal SCO cells. In general, the mouse SCO is characterized by an early appearance in prenatal life and a late acquisition of the final differentiated state.

Animals↗

[The dendritic structure of the habenula in the albino mouse].

The habenular complex of adult albino mice is studied with the Golgi method. In the medial habenular nucleus 2 neuronal types were distinguished; one of them is restricted to a small near to the commissura habenularis. The principal neuronal type is characterized by complicated dendritic ramifications and the presence of dendritic glomeruli encapsulated by protoplasmic astroglial membranes. In the lateral habenular nucleus three neuronal types were found, all of them with long, poorly ramified dendrites, but differing with respect to the size of their somata and their dendritic profiles. Thus, concerning their dendritic structure, the two regions of the habenula do not show any similarity.

Axons↗

[Quantitative age-dependent variations in dendritic spines in the hippocampus (CA1, CA3 and fascia dentata) of the albino mouse].

The dendritic spines of the apical and basal dendrites of pyramidal neurons in CA1 and CA3 and of granule cells in Fascia Dentata were investigated in 19 stages of age, from the 10th to the 190th postnatal day. The results were statistically evaluated. In CA1 and CA3 a first increase in the number of spines (with a maximum at 35 days) is followed by a subsequent decrease up to the 65th day and a further increase up to the 190th day. This developmental pattern is found in the apical dendrites of CA1 and CA3 in all its investigated segments. On the contrary the basal dendrites differ from this pattern. The spines in the Fascia Dentata show a rapid increase up to the 15th postnatal day followed by a slow but constant increase up the end of our study.

Aging↗