Respiratory alkalinization and posterior cerebral artery dilatation predict acute mountain sickness severity during 10 h normobaric hypoxia

H Barclay, S Mukerji, B Kayser… - Experimental …, 2021 - Wiley Online Library
New Findings What is the central question of this study? The pathophysiology of acute
mountain sickness (AMS), involving the respiratory, renal and cerebrovascular systems …

Respiratory alkalinization and posterior cerebral artery dilatation predict acute mountain sickness severity during 10 h normobaric hypoxia

H Barclay, S Mukerji, B Kayser… - Experimental …, 2021 - pubmed.ncbi.nlm.nih.gov
New findings What is the central question of this study? The pathophysiology of acute
mountain sickness (AMS), involving the respiratory, renal and cerebrovascular systems …

[PDF][PDF] Respiratory alkalinization and posterior cerebral artery dilatation predict acute mountain sickness severity during 10 h normobaric hypoxia

H Barclay, S Mukerji, B Kayser, T O'Donnell, YC Tzeng… - 2020 - serval.unil.ch
The complex pathophysiology of acute mountain sickness (AMS) remains poorly understood
and is likely to involve maladaptive responses of the respiratory, renal and cerebrovascular …

Respiratory alkalinization and posterior cerebral artery dilatation predict acute mountain sickness severity during 10 h normobaric hypoxia.

H Barclay, S Mukerji, B Kayser, T O'Donnell… - Experimental …, 2021 - europepmc.org
The complex pathophysiology of acute mountain sickness (AMS) remains poorly understood
and is likely to involve maladaptive responses of the respiratory, renal and cerebrovascular …

[PDF][PDF] Respiratory alkalinization and posterior cerebral artery dilatation predict acute mountain sickness severity during 10 h normobaric hypoxia

H Barclay, S Mukerji, B Kayser, T O'Donnell, YC Tzeng… - 2020 - serval.unil.ch
The complex pathophysiology of acute mountain sickness (AMS) remains poorly understood
and is likely to involve maladaptive responses of the respiratory, renal and cerebrovascular …