Neuroendocrine mechanisms are major determinants of the normal 24-h blood pressure (BP) pattern. At the central level, integration of the major driving factors of this temporal variability is mediated by circadian rhythms of monoaminergic systems in conjunction with those of the hypothalamic-pituitary-adrenal, hypothalamic-pituitary-thyroid, opioid, renin-angiotensin-aldosterone, plus endothelial systems and specific vasoactive peptides. Humoral secretions are typically episodic, coupled either to sleep and/or the circadian endogenous (suprachiasmatic nucleus) central pacemaker clock, but exhibiting also weekly, monthly, seasonal, and annual periodicities. Sleep induction and arousal are influenced also by many hormones and chemical substan...
The morning surge in blood pressure (BP) coincides with increased cardiovascular (CV) events. This s...
Healthy individuals exhibit blood pressure variation over a 24-hour period with higher blood pressur...
24h ambulatory blood pressure monitoring (ABPM) can easily detect the circadian blood pressure (BP) ...
In normal conditions, the temporal organization of blood pressure (BP) is mainly controlled by neuro...
Blood pressure (BP) exhibits significant 24 h variation; in most normotensive and uncomplicated hype...
The temporal organization of blood pressure is mainly controlled by neuroendocrine mechanisms. The m...
Description of the main neuroendocrine mechanisms of temporal blood pressure variability during the ...
Stages of different depth characterize the temporal organization of sleep. Each stage exerts an effe...
The circadian blood pressure (BP) rhythm is associated with worsened cardiovascular outcomes in pati...
The biology of human beings is not constant during the 24 hours, menstrual cycle, and year as inferr...
Ambulatory blood pressure (BP) measurements present a close correlation with target organ damage and...
Rationale: Blood pressure (BP) usually decreases during nocturnal sleep and increases during daytime...
The 24 h profiles of hormonal secretions represent a good model for the study of the human circadian...
The impact of environmental and behavioral factors on the 24-h profile of blood pressure (BP) has be...
Specific features of the 24 h-blood pressure (BP) pattern are linked to the progressive injury of ta...
The morning surge in blood pressure (BP) coincides with increased cardiovascular (CV) events. This s...
Healthy individuals exhibit blood pressure variation over a 24-hour period with higher blood pressur...
24h ambulatory blood pressure monitoring (ABPM) can easily detect the circadian blood pressure (BP) ...
In normal conditions, the temporal organization of blood pressure (BP) is mainly controlled by neuro...
Blood pressure (BP) exhibits significant 24 h variation; in most normotensive and uncomplicated hype...
The temporal organization of blood pressure is mainly controlled by neuroendocrine mechanisms. The m...
Description of the main neuroendocrine mechanisms of temporal blood pressure variability during the ...
Stages of different depth characterize the temporal organization of sleep. Each stage exerts an effe...
The circadian blood pressure (BP) rhythm is associated with worsened cardiovascular outcomes in pati...
The biology of human beings is not constant during the 24 hours, menstrual cycle, and year as inferr...
Ambulatory blood pressure (BP) measurements present a close correlation with target organ damage and...
Rationale: Blood pressure (BP) usually decreases during nocturnal sleep and increases during daytime...
The 24 h profiles of hormonal secretions represent a good model for the study of the human circadian...
The impact of environmental and behavioral factors on the 24-h profile of blood pressure (BP) has be...
Specific features of the 24 h-blood pressure (BP) pattern are linked to the progressive injury of ta...
The morning surge in blood pressure (BP) coincides with increased cardiovascular (CV) events. This s...
Healthy individuals exhibit blood pressure variation over a 24-hour period with higher blood pressur...
24h ambulatory blood pressure monitoring (ABPM) can easily detect the circadian blood pressure (BP) ...