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1.
Ugeskr Laeger ; 185(26)2023 06 26.
Article in Danish | MEDLINE | ID: mdl-37381876

ABSTRACT

This review focuses on ageing and sleep. A key focus in aging is to improve senescence by extending good health, optimal cognitive function, and medical and social assistance into later life. Given that one third of the human lifespan is spent sleeping, the importance of maintaining deep, stable, and consistent sleep is self-evident for the good life quality expected and optimal daytime functioning, which the aging process always curtails. For this reason, employees in the health system should know and focus on the expected changes in sleep patterns and disturbances from young adults to old age, including possible disorders and treatments.


Subject(s)
Aging , Longevity , Humans , Young Adult , Cognition , Quality of Life , Sleep , Aged
2.
Am J Physiol Regul Integr Comp Physiol ; 309(9): R1172-7, 2015 Nov 01.
Article in English | MEDLINE | ID: mdl-26290109

ABSTRACT

It is known that arterial pressure correlates positively with body height in males, and it has been suggested that this is due to the increasing vertical hydrostatic gradient from the heart to the carotid baroreceptors. Therefore, we tested the hypothesis that a higher gravito-inertial stress induced by the use of a human centrifuge would increase mean arterial pressure (MAP) more in tall than in short males in the seated position. In short (162-171 cm; n = 8) and tall (194-203 cm; n = 10) healthy males (18-41 yr), brachial arterial pressure, heart rate (HR), and cardiac output were measured during +2G centrifugation, while they were seated upright with the legs kept horizontal (+2Gz). In a separate experiment, the same measurements were done with the subjects supine (+2Gx). During +2Gz MAP increased in the short (22 ± 2 mmHg, P < 0.0001) and tall (23 ± 2 mmHg, P < 0.0001) males, with no significant difference between the groups. HR increased more (P < 0.05) in the tall than in the short group (14 ± 2 vs. 7 ± 2 bpm). Stroke volume (SV) decreased in the short group (26 ± 4 ml, P = 0.001) and more so in the tall group (39 ± 5 ml, P < 0.0001; short vs. tall, P = 0.047). During +2Gx, systolic arterial pressure increased (P < 0.001) and SV (P = 0.012) decreased in the tall group only. In conclusion, during +2Gz, MAP increased in both short and tall males, with no difference between the groups. However, in the tall group, HR increased more during +2Gz, which could be caused by a larger hydrostatic pressure gradient from heart to head, leading to greater inhibition of the carotid baroreceptors.


Subject(s)
Adaptation, Physiological/physiology , Arterial Pressure/physiology , Body Height/physiology , Hypergravity , Posture/physiology , Adolescent , Adult , Cardiac Output/physiology , Centrifugation/methods , Gravity Sensing/physiology , Humans , Male , Pressoreceptors/physiology , Supine Position , Young Adult
3.
Am J Physiol Regul Integr Comp Physiol ; 302(8): R984-9, 2012 Apr 15.
Article in English | MEDLINE | ID: mdl-22338081

ABSTRACT

The hypothesis was tested that the cardiovascular changes during an upper body anti-orthostatic maneuver in humans are more pronounced in tall than in short individuals, because of the larger intravascular hydrostatic pressure gradients. In 34 males and 41 females [20-30 yr, body height (BH) = 147-206 cm], inter-individual multiple linear regression analyses adjusted for gender and body weight were conducted between changes in cardiovascular variables versus BH during tilting of the upper body from vertical to horizontal while keeping the legs horizontal. In all the subjects, tilting induced increases in stroke volume and arterial pulse pressure and a decrease in heart rate, which each correlated significantly with BH. In males (n = 51, BH = 163-206 cm), 24-h ambulatory mean arterial pressure increased significantly with BH (P = 0.004, r = 0.40, α = 0.15 mmHg/cm) so that systolic/diastolic blood pressure increased by 2/2 mmHg per 15 cm increase in BH. There was no significant correlation between mean arterial pressure and BH in females (n = 53, BH = 147-193 cm). In conclusion, a larger BH induces larger cardiovascular changes during anti-orthostatic tilting, and in males 24-h ambulatory mean arterial pressure increases with BH. The lack of a mean arterial pressure to BH correlation in females is probably because of their lower BH and greater variability in blood pressure.


Subject(s)
Blood Pressure/physiology , Body Height/physiology , Dizziness/physiopathology , Adult , Female , Heart Rate/physiology , Humans , Male , Orientation/physiology , Sex Factors
4.
Comp Biochem Physiol A Mol Integr Physiol ; 142(4): 495-502, 2005 Dec.
Article in English | MEDLINE | ID: mdl-16289770

ABSTRACT

Digestion is associated with gastric secretion that leads to an alkalinisation of the blood, termed the "alkaline tide". Numerous studies on different reptiles and amphibians show that while plasma bicarbonate concentration ([HCO(3)(-)](pl)) increases substantially during digestion, arterial pH (pHa) remains virtually unchanged, due to a concurrent rise in arterial PCO(2) (PaCO(2)) caused by a relative hypoventilation. This has led to the suggestion that postprandial amphibians and reptiles regulate pHa rather than PaCO(2). Here we characterize blood gases in the South American rattlesnake (Crotalus durissus) during digestion and following systemic infusions of NaHCO(3) and HCl in fasting animals to induce a metabolic alkalosis or acidosis in fasting animals. The magnitude of these acid-base disturbances were similar in magnitude to that mediated by digestion and exercise. Plasma [HCO(3)(-)] increased from 18.4+/-1.5 to 23.7+/-1.0 mmol L(-1) during digestion and was accompanied by a respiratory compensation where PaCO(2) increased from 13.0+/-0.7 to 19.1+/-1.4 mm Hg at 24 h. As a result, pHa decreased slightly, but were significantly below fasting levels 36 h into digestion. Infusion of NaHCO(3) (7 mmol kg(-1)) resulted in a 10 mmol L(-1) increase in plasma [HCO(3)(-)] within 1 h and was accompanied by a rapid elevation of pHa (from 7.58+/-0.01 to 7.78+/-0.02). PaCO(2), however, did not change following HCO(3)(-) infusion, which indicates a lack of respiratory compensation. Following infusion of HCl (4 mmol kg(-1)), plasma pHa decreased by 0.07 units and [HCO(3)(-)](pl) was reduced by 4.6 mmol L(-1) within the first 3 h. PaCO(2), however, was not affected and there was no evidence for respiratory compensation. Our data show that digesting rattlesnakes exhibit respiratory compensations to the alkaline tide, whereas artificially induced metabolic acid-base disturbances of same magnitude remain uncompensated. It seems difficult to envision that the central and peripheral chemoreceptors would experience different stimuli during these conditions. One explanation for the different ventilatory responses could be that digestion induces a more relaxed state with low responsiveness to ventilatory stimuli.


Subject(s)
Acidosis/veterinary , Crotalus/physiology , Digestion/physiology , Hydrochloric Acid/administration & dosage , Sodium Bicarbonate/administration & dosage , Acidosis/blood , Acidosis, Respiratory/veterinary , Animals , Blood Gas Analysis , Crotalus/blood , Hydrochloric Acid/blood , Hydrogen-Ion Concentration , Infusions, Intravenous , Sodium Bicarbonate/blood , South America , Species Specificity , Time Factors
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