Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “HIBERNATION”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 667 records · Page 37Linked to original sources

Effect of winter high temperatures on reproduction and circannual rhythms in hibernating ground squirrels.

We tested whether prevention of hibernation in ground squirrels by midwinter exposure to high ambient temperatures influenced timing of the spring phase of reproductive maturation and the phase and period of subsequent circannual rhythms of reproduction and body mass. Exposing hibernating adult male Spermophilus lateralis to 30 degrees C for 6 weeks beginning December 4 advanced the timing of testicular recrudescence by 4-5 weeks, compared to controls left at 4 degrees C. Males exposed to 30 degrees C for 6 weeks beginning at the average time of spontaneous end of hibernation (January 15) reached reproductive maturation at a time intermediate to those of controls and of the December 4 experimental group. However, neither the date of the subsequent fall's body mass peak, the date of the next year's reproductive maturation, nor the periods of circannual rhythms of body mass and reproduction differed among groups. Premature interruption of hibernation appears to allow early expression of reproduction, but does not affect the underlying timing mechanism.

Animals↗

Ubiquitous and temperature-dependent neural plasticity in hibernators.

Hibernating mammals are remarkable for surviving near-freezing brain temperatures and near cessation of neural activity for a week or more at a time. This extreme physiological state is associated with dendritic and synaptic changes in hippocampal neurons. Here, we investigate whether these changes are a ubiquitous phenomenon throughout the brain that is driven by temperature. We iontophoretically injected Lucifer yellow into several types of neurons in fixed slices from hibernating ground squirrels. We analyzed neuronal microstructure from animals at several stages of torpor at two different ambient temperatures, and during the summer. We show that neuronal cell bodies, dendrites, and spines from several cell types in hibernating ground squirrels retract on entry into torpor, change little over the course of several days, and then regrow during the 2 h return to euthermia. Similar structural changes take place in neurons from the hippocampus, cortex, and thalamus, suggesting a global phenomenon. Investigation of neural microstructure from groups of animals hibernating at different ambient temperatures revealed that there is a linear relationship between neural retraction and minimum body temperature. Despite significant temperature-dependent differences in extent of retraction during torpor, recovery reaches the same final values of cell body area, dendritic arbor complexity, and spine density. This study demonstrates large-scale and seemingly ubiquitous neural plasticity in the ground squirrel brain during torpor. It also defines a temperature-driven model of dramatic neural plasticity, which provides a unique opportunity to explore mechanisms of large-scale regrowth in adult mammals, and the effects of remodeling on learning and memory.

Animals↗

Plasma progesterone concentrations in female little brown bats (Myotis lucifugus) during hibernation.

Monthly collections of hibernating little brown bats contained (1) nulliparous females with small uteri and no antral follicles, (2) nulliparous females with swollen uteri and mature follicles, and (3) parous females, which, despite obvious differences in reproductive status, had equivalent plasma progesterone values. During the principal study season, mean monthly progesterone concentrations (measured by radioimmunoassay) showed recurrent increases with an apparent periodicity of about 60 days, but limited data obtained in the subsequent season did not. However, comparison of activity patterns in the two seasons with monthly progesterone concentrations suggests that ovarian activity during hibernation is affected by variations in metabolic level. We saw no evidence that nulliparous bats with small uteri developed antral follicles during hibernation. Despite their apparent immaturity, however, they had cornified vaginae and most were demonstrably inseminated. These indications of oestrus and the lack of differences between their plasma progesterone concentrations and those of patently mature females suggest that they were physiologically post-pubertal but failed to complete folliculogenesis before entering hibernation.

Animals↗

Fine distribution of CLOCK protein in hepatocytes of hibernating dormice.

CLOCK protein is a member of the bHLH-PAS family of transcription factors, it is expressed in several tissues including the liver and is essential for normal circadian rhythms. In this study we investigate the distribution of CLOCK protein in hepatocytes of euthermic and hibernating edible dormice Glis glis as well as in hepatocytes taken from the hibernating animals submitted in vitro to experimental conditions mimicking the arousal process. Our results demonstrate that CLOCK protein is expressed in all animals and is mostly located in the nucleus, in particular, on perichromatin fibrils and nucleoli. During deep hibernation CLOCK protein becomes more abundant but an intracellular redistribution occurs: the protein significantly decreases in all cellular compartments, but it accumulates in the amorphous bodies. These nuclear bodies, typical of the hibernating state, probably represent storage sites for CLOCK protein to be quickly used upon arousal. Accordingly, in hepatocytes submitted to in vitro conditions mimicking arousal CLOCK protein levels rapidly reach the euthermic values, while amorphous bodies disappear.

Animals↗

[Effects of the afferent stimulation on neurons in the medial septal region slices and their modulation by biologically active compounds in hibernating and waking ground squirrels].

Responses of the medial septal (MS-DB) neurons to electrical stimulation of the medial forebrain bundle (MFB) and their modulation by some neuropeptides and monoamines were investigated in brain slices taken from two groups of ground squirrels-hibernating (HGS) and waking (WGS). Electrical stimulation evoked mostly inhibitory effects of various duration. Besides, responses by phase reset of the background rhythmic bursts and short-latency single spike responses were observed. The neuropeptides identified in the brain of hibernators differentially and reversibly modulated responses even in those neurons where they did not influence the level and pattern of the background activity. Effects of the peptides were state-dependent. E.g., the peptide TSKYR increased the duration of inhibitory effects in the HGS but shortened them in the WGS, while TSKY which had low efficacy in the HGS, increased the duration of inhibition in the WGS. Dipeptide DY depressed inhibitory components and augmented excitatory components of responses in the HGS but was much less effective in the WGS. Effects of noradrenaline and serotonin had stronger correlation with their influence on spontaneous activity. It is suggested that endogenous substances provide for the increased latent excitability and reactivity of the MS-DB neurons during seasonal hibernation. Thus, the MS-DB may function as a "sentry post" participating in signal detection and urgent arousal during hibernation.

Afferent Pathways↗

[Effect of brain stem lesions on hibernation of the hamster (Cricetus cricetus L.)].

Small lesions in the brain stem (including the hypothalamus) of the European hamster were effective with respect to food intake, hibernatory disposition and thermogenic power (oxygen consumption) as well. Hyperphagia was accompanied by depression of hibernation mostly. Moreover, hibernation was hindered by impairment of the thermogenic capacity. Entrance into hibernation depended on the integrity of the middle and caudal hypothalamic areas and the rostral portions of the pons and midbrain. Hyperphagia resulted from destruction of the middle (ventromedial) hypothalamic and caudal hypothalamic areas, including transition structures to the pons. A depression of thermogenesis against cold was observed after destruction of supramammillary and neighbouring mesencephalic areas. Supplementary results: An annual metabolic rhythm characterized by a minimum in december has been established once more. Urethane anesthesia did not abolish cold thermogenesis, despite the development of a slight hypothermia. Poikilothermia resulting from brain stem damage disappeared during a three-day period. Furthermore, diencephalic lesions did not suppress arousal from hibernation significantly.

Animals↗

[Endocrine cells of the mucous membrane of the fundus region of the stomach of hibernating rodents].

The gastric mucous membrane was studied in the hibernating animal Citellus erythrogenys in different seasons (during 7-8 months a year the animal is in hibernation and its digestive tract is not functioning). During hibernation the general amount of enterochromaffin-like cells decreases and their composition changes: the number of active cells diminishes and that of less active cells grows. Such dynamics of cells suggests the participation of enterochromaffin-like cells of Citellus erythrogenys in the regulation of gastric secretion (in rats and mice these cells contain histamine stimulating the mucous membrane glands). The amount of true enterochromaffin cells is not sufficiently changed and they seem to be not directly related with digestion but to be producers of serotonin which (together with serotonin of the brain) takes part in sustaining the mechanisms of appearance and supporting of winter hibernation.

Animals↗

[Radioautographic study of the in vitro incorporation of tritiated noradrenaline into central catecholaminergic fibers in active and hibernating hedgehogs].

After in vitro incubation for 15 min at 38 degrees C with tritiated noradrenaline (3H-NA) of pieces of brain, including cortex and hypothalamus, from active hedgehogs, significant radioautographic reactions were observed on thick and thin sections where they overlaid catecholaminergic varicosities. Such reactions were severely decreased in the same in vitro conditions using brains from hibernating animals. After reserpine treatment they disappeared in active animals and could not be observed during hibernation. There were no reactions in these two cases following incubation at 6 degrees C. Incorporation of 3H NA at 6 degrees C in central catecholaminergic fibers does not there fore differ in homeotherms and in this hibernating animal. Its reduction during hibernation, even after (rapid) warming up at 38 degrees C, might be related to the impairment of energetic metabolic processes during this period.

Adrenergic Fibers↗

[Lipid peroxidation and the status of the antioxidant system in the tissues of ground squirrel (Citellus pygmaeus) in the dynamic of hibernation].

The rate of lipid peroxidation and activities of superoxide dismutase, catalase, and hydrophilic antioxidants were studied in the hypothalamus, liver, kidney, myocardium, skeletal muscle, and serum of Citellus pygmaeus upon entering hibernation (18-20 degrees C), in early torpor (7-10 degrees C), and after hibernation for a week or three months (5-10 degrees C). During hibernation, lipid peroxidation proved to either decrease or remain at the level characteristic of waking animals. High antioxidant activity was maintained in most tissues, particularly, in the case of prolonged hibernation.

Animals↗

Cytologic changes of the retina and pigment epithelium during hibernation.

The pigment epithelium and the retina of hibernating frogs, bats, and ground squirrels are studied electron microscopically and the findings are compared with those of the same animals obtained in normal condition. The smooth endoplasmic reticulum of the pigment epithelial cell becomes sparse and transforms into large tubular structures during the hibernation. No appreciable changes are noted in the rod outer segments of hibernating bats and frogs. However, the cone outer segments of the ground squirrel show striking disappearance during experimental hibernation. Regeneration of the cone outer segments of the squirrel retina is found to be fast when the animals are placed in a normal environment.

Animals↗

[Activation of oxidative phosphorylation and energy-dependent absorption of Ca2+ and K+ ions by liver mitochondria of hibernating ground squirrels in hypotonic media].

Activation of initially suppressed oxidative phosphorylation and energy-dependent uptake of Ca2+ and K+ ions by liver mitochondria of hibernating gophers which is prevented by phospholipase A2 inhibitors, has been shown to occur in hypotonic media. Partial inhibition of the respiratory chain of liver mitochondria of active gophers by antimycin A which causes a decrease in the uncoupled respiration rate and delta psi down to values typical of mitochondria of hibernating gophers, practically exactly reproduced the suppression of oxidative phosphorylation and energy-dependent uptake of cations observed during hibernation. It was concluded that partial deenergization arising as a result of inhibition of the respiratory chain is the main and unique cause of suppression of energy-dependent functions of liver mitochondria of hibernating gophers.

Adenosine Triphosphate↗

[The excitability of neurons of the medial septal area in brain slices from hibernating and active Citellus undulatus susliks].

Spontaneous and evoked neuronal activity of the medical septum-diagonal band complex (MS-DB) has been investigated in slices from the brain of hibernating and active ground squirrels, as well as guinea pigs. In all experimental groups, the majority of the MS-DB neurones exhibited high regular of rhythmic burst spontaneous activity which persisted even after synaptic blockade in half of the neuronal population. Under the same conditions, the activity of the surrounding structures was completely suppressed. The density of the spontaneously active neurones in the slices, as well as the mean frequency of discharges in the MS-DB of hibernating ground squirrels, were significantly higher than in active ground squirrels and guinea pigs. Stimulation of the medial forebrain bundle evoked initial suppression of the activity in the majority of MS-DB units; in many of them, the suppression was followed by a burst discharge. Neurones with background rhythmic burst activity always reacted by resetting the spontaneous bursts. In total, 50-60% of the MS-DB neurones in active ground squirrels and guinea pigs reacted by post-inhibitory bursts, whereas in hibernating animals these responses were observed nearly in all neurones. Threshold values of the stimulating current were lower in hibernating animals; the intraburst density of spikes was increased.

Animals↗

Two-day preservation of major organs with autoperfusion multiorgan preparation and hibernation induction trigger. A preliminary report.

A new autoperfusion multiorgan preparation was studied in which the heart and lungs were removed with the liver, pancreas, duodenum, and both kidneys en bloc while being perfused by the heart and oxygenated by the lungs. A respirator with 50% oxygen was used for ventilation. Fresh blood, glucose, electrolytes, mannitol, and antibiotics were given through the portal vein. Fifteen mongrel dogs were used. In the study group (seven dogs), 10 ml of plasma containing hibernation induction trigger, obtained from deeply hibernating woodchucks, was given intravenously 2 hours before the operation, and 4 ml was given every 4 hours during the preservation period. In the control group (eight dogs), no hibernation induction trigger was used. Survival time in the study group ranged from 33 to 56 hours (mean 43.4 +/- 4.1 hours), longer than that of the control group, which was 9 to 31 hours (mean 16.2 +/- 2.6 hours, p less than 0.001). In the study group aortic systolic pressure ranged from 64 +/- 5 to 92 +/- 7 mm Hg, arterial oxygen tension from 180 +/- 35 to 285 +/- 66 mm Hg. Urine output ranged from 15 to 70 ml/hour. Blood urea nitrogen declined from 15.6 +/- 2.5 to 6.6 +/- 1.3 mg/dl (p less than 0.01); creatinine declined from 0.8 +/- 0.03 to 0.3 +/- 0.01 mg/dl (p less than 0.01). Severe liver congestion and premature renal failure occurred in the control group but did not occur in the study group. In the study group one lung was transplanted after 33 hours of preservation with simultaneous contralateral pulmonary artery ligation. Good lung function was maintained after transplantation. Although the exact mechanism by which hibernation induction trigger extends tissue survival time is still not clear, its effect on organ preservation is profound. This study also produced one of the longest average survival times for organ preservation.

Animals↗

[Phospholipase A activity determines the rate of respiration of the mitochondria in hibernating animals].

The mechanisms for regulating the rate of respiration and oxidative phosphorylation in liver mitochondria from hibernating ground squirrels were studied. The microviscosity of the mitochondrial membrane in hibernating squirrels was found to be higher than that in active animals. Probably, a high microviscosity of the membrane causes a decreases in the rate of the transport of oxidation substrates into the mitochondrial matrix, which in turn may be one of the main reasons for the inhibition of mitochondrial respiration in hibernating squirrels. The activation of phospholipase A2 in a hypotonic medium results in the acceleration of the respiration and phosphorylation in the mitochondria from hibernating squirrels and is accompanied by the increase of the transport of substrates across the mitochondrial membrane. The inhibition of phospholipase A2 decreases Ca2+--induced acceleration of the transport of substrates and prevents the activation of the respiration and phosphorylation in a hypotonic medium.

Animals↗

[Seasonal dynamics of the gastric APUD cell count in a hibernator].

Light microscopy was applied to study variation in the composition and number of apudocytes in the gastric epithelium of red-cheeked sousliks over time. During hibernation, the content of serotonin-producing EC cells was elevated. This is in agreement with serotonin involvement in the maintenance of the hibernation state. The number of non-EC cells taking part in digestion, which does not occur during hibernation, was lowered. Spring awakening was accompanied with an increase in the number of non-EC cells and the lack of significant changes in cells. In souslics, which were active in winter, the content of non-cells was high, since the animals continued feeding on, and the content of EC-cells was elevated similarly to that in hibernating animals, which could be explained by genetic dependence. The number of apudocytes in the gastric mucosa was discovered to correlate in the main with the features of their function at different seasons.

APUD Cells↗

[Hibernation of Dermacentor marginatus ticks in alpine Armenia].

Only mature ticks, engorged females and hungry imago hibernate in mountain regions of Armenia. According to the author's observations eggs of ticks as well as their larvae are not capable of hibernating. In females of spring satiation the development of eggs proceeds in most short periods from May to October. The longest period before the beginning of egg laying is observed in ticks of summer and autumn satiation. It becomes prolonged, in general, on account of hibernation of satiated females. Females of August-September satiation hibernate more successfully than females satiated in June and July.

Altitude↗

[Biochemical bases of the inhibition and activation of liver mitochondrial respiration in hibernating susliks].

The possible mechanisms in regulation of the respiration rate of mitochondria from liver of hibernating ground squirrels have been investigated. The inhibition of respiration has been shown to be mainly due to the inhibition of electron transfer to the respiratory chain from flavoproteins to cytochrome c. Calcium ions evoke the gradual increase in the respiration rate of mitochondria from liver of hibernating ground squirrels which is abolished by adding albumin, ruthenium red and sovcaine. The lower content of free fatty acids and decreased rate of the oxidation of exogenic NADH in the external pathway indicate the decrease in the activity of phospholipase A2 in mitochondria from liver of hibernating ground squirrels. The decreased calcium capacity of mitochondria indicates the higher sensitivity to calcium ions. A conclusion concerning the leading role of phospholipase A2 in Ca-induced activation of respiration of mitochondria from liver of hibernating ground squirrels is made.

Animals↗

[Possible mechanism of the reorganization of the cardiomyocyte plasma membrane in the suslik in the hibernation-arousal-wakefulness cycle].

Studies have been made on the ultrastructure of cardiomyocytes during hibernation and arousal of the ground squirrel C. undulatus. It was found that the number of elements of the rough endoplasmic reticulum, Golgi complex, vesicles and ribosomes increases in the perinuclear areas of cardiomyocytes during arousal of animals. These areas are saturated with lipid inclusions and mitochondria. Numerous vesicles and fringed bubbles were found near the plasma membrane which has many caveolae. These findings may indicate the intense metabolism of the membrane material between plasmalemma and cytoplasmic vesicles. Possible mode of rapid reorganization of the sarcolemma and changes in its functional properties during hibernation-arousal stages are suggested. It is concluded that apart from structural and functional properties which are acquired by cells during preparation of animals to hibernation and which exhibit only small changes during the whole period of hibernation, cyclic changes in plasmalemma structure and function occur during arousal of the ground squirrels.

Adaptation, Physiological↗