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[The hematological status of rats born and raised under increased gravitational force].

Blood and bone marrow morphology of the rats the pre- and postnatal development of which up to the ages of 60 and 75 days took place under 2g environments induced by a continuous centrifuge rotation. The response to a reduced gravity was studied in 60-day-old rats on post-rotation days 2 and 15. Immediately post-rotation, these animals exhibited: an intensified erythropoiesis resulting in an elevated erythroid cell counts, an activated eosinophilopoiesis and decreased level of neutrophilopoiesis. Return of the animals to a terrestrial environment during a 2-week period has caused a greater increase of erythroid production and the tendency toward normalizing granulocytopoiesis. In the 75-day-old rats developed under 2g, erythro- and granulocytopoiesis have tended to be recovered and bone marrow population of lymphoid and plasma cells was significantly decreased. The results point to the fact that hemopoiesis adaptation to an increased gravity during the studied period of time is not accomplished and this hematologic status depends on a changed status, of the controlling systems.

Aging↗

[The structure of the reticulum of Mauthner's neurons in tadpoles of the clawed toad grown under increased gravitational force].

The ultrastructure of the Mauthner cells (M-cells) and the behaviour of Xenopus laevis tadpoles, reared from eggs under increased gravity (2.9 g) which changes the activity of an afferent vestibular input, were investigated. Besides, a study was made of tadpoles after the hindbrain ablation at earlier embryonal stages which significantly altered the microenvironment of M-cells. It is shown that experimental treatments enhance the proliferation of endoplasmic reticulum and its derivatives, so called subsurface cisterns, in the subsynaptic areas. Some structural changes of the synaptic active zones and the cytoskeleton of M-cells were also noticed. It is assumed that the development of the endoplasmic reticulum promotes an intense removal of calcium ions from subsynaptic areas. The plasticity of the endoplasmic reticulum together with other ultrastructural changes apparently stipulate the adaptation of neurons to changed conditions of functioning.

Animals↗