Background: Prolonged breath holding results in hypoxemia and hypercapnia. Compensatory mechanisms help maintain adequate oxygen supply to hypoxia sensitive organs, but burden the cardiovascular system. The aim was to investigate human compensatory mechanisms and their effects on the cardiovascular system with regard to cardiac function and morphology, blood flow redistribution, serum biomarkers of the adrenergic system and myocardial injury markers following prolonged apnoea. Methods: Seventeen elite apnoea divers performed maximal breath-hold during cardiovascular magnetic resonance imaging (CMR). Two breath-hold sessions were performed to assess (1) cardiac function, myocardial tissue properties and (2) blood flow. In between CMR session...
The effects of involuntary respiratory contractions on the cerebral blood flow response to maximal a...
AIMS: To examine whether dynamic cerebral autoregulation is acutely impaired during maximal voluntar...
Purpose: We hypothesized that the third dynamic phase (3) of the cardiovascular response to apnoea r...
Abstract Background Prolonged breath holding results in hypoxemia and hypercapnia. Compensatory mech...
International audienceAim: Voluntary apnoea induces several physiological adaptations, including bra...
Background: Prolonged apnea by breath-hold (BH) divers leads to hypoxemia and compensatory mechanism...
Prolonged breath hold (BH) represents a valid model for studying the cardiac adaptation to acute hyp...
The aim of the study was to assess changes in subarachnoid space width (sas-TQ), the marker of intra...
Purpose: We hypothesized that the third dynamic phase (ϕ3) of the cardiovascular response to apnoea ...
Aim Considering that sympathetic activation is induced by exercise, it is reasonable to assume that ...
The aim of the study was to assess changes in subarachnoid space width (sas-TQ), the marker of intra...
When a diving human holds his or her breath, the heart beat slows and the blood vessels constrict in...
The diving response is the sequence of cardiovascular, respiratory and metabolic adjustments produce...
To define the dynamics of cardiovascular adjustments to apnoea, beat-to-beat heart rate (HR) and blo...
Involuntary apnea during sleep elicits sustained arterial hypertension through sympathetic activatio...
The effects of involuntary respiratory contractions on the cerebral blood flow response to maximal a...
AIMS: To examine whether dynamic cerebral autoregulation is acutely impaired during maximal voluntar...
Purpose: We hypothesized that the third dynamic phase (3) of the cardiovascular response to apnoea r...
Abstract Background Prolonged breath holding results in hypoxemia and hypercapnia. Compensatory mech...
International audienceAim: Voluntary apnoea induces several physiological adaptations, including bra...
Background: Prolonged apnea by breath-hold (BH) divers leads to hypoxemia and compensatory mechanism...
Prolonged breath hold (BH) represents a valid model for studying the cardiac adaptation to acute hyp...
The aim of the study was to assess changes in subarachnoid space width (sas-TQ), the marker of intra...
Purpose: We hypothesized that the third dynamic phase (ϕ3) of the cardiovascular response to apnoea ...
Aim Considering that sympathetic activation is induced by exercise, it is reasonable to assume that ...
The aim of the study was to assess changes in subarachnoid space width (sas-TQ), the marker of intra...
When a diving human holds his or her breath, the heart beat slows and the blood vessels constrict in...
The diving response is the sequence of cardiovascular, respiratory and metabolic adjustments produce...
To define the dynamics of cardiovascular adjustments to apnoea, beat-to-beat heart rate (HR) and blo...
Involuntary apnea during sleep elicits sustained arterial hypertension through sympathetic activatio...
The effects of involuntary respiratory contractions on the cerebral blood flow response to maximal a...
AIMS: To examine whether dynamic cerebral autoregulation is acutely impaired during maximal voluntar...
Purpose: We hypothesized that the third dynamic phase (3) of the cardiovascular response to apnoea r...