Before birth, the foramen ovale is a normal opening in the heart that allows blood to flow from the mother to the baby. After birth, this opening usually closes. However, in up to 38% of the population it does not fully close and is then called a patent foramen ovale (PFO). Having a PFO allows venous (blue) blood to mix with arterial (red) blood in the heart, which can lower blood oxygen levels. The mixing of blood has been suggested to be greater during exercise and with exposure to high-altitude. Also, people with a PFO may be a greater risk for severe altitude sickness, specifically involving the collection of fluid in the lungs which makes breathing very difficult - this is called high-altitude pulmonary edema (HAPE).
No study has directly measured the pressure difference across the heart which is required for the mixing of blood during exercise or at high-altitude. The present study will directly measure the pressure difference across the heart, as well as blood flow through the PFO during rest and exercise in simulated high altitude in adults with and without a PFO and a previous history of severe altitude sickness. The study will test the hypothesis that elevations in pulmonary artery pressure during exposure to hypoxia will not elicit a pressure gradient, and thus blood flow, across the PFO neither at rest nor during exercise.
Inclusion Criteria:
Exclusion Criteria:
giorgio.manferdelli@utsouthwestern.edu
Adults with documented history of high-altitude pulmonary edema and a patent foramen ovale
Adults with documented history of high-altitude pulmonary edema
marychilders@texashealth.org214-345-6459
Does Patent Foramen Ovale Size Matter in Men and Women
Does Patent Foramen Ovale Closure Improve Exercise Capacity & Prevent Blood Flow Through Intrapulmonary Shunt
Susceptibility to High Altitude Pulmonary Edema in Subjects With Increased Hypoxic Pulmonary Vasoconstriction
Effect of Acute Hypoxia on RIght VEntRicular Function in HAPE.
Is Blood Flow Through IPAVA and PFO Related to Breath-hold and SCUBA Diving-induced Pulmonary Hypertension?
Acute Exposure of Simulated Hypoxia on ECG and Non-invasive Blood Pressure
PFO Closure for Obstructive Sleep Apnoea
Hypoxia Impairs Endothelial Function in HAPEs