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Assessment of Pulmonary Capillary Blood Volume, Membrane Diffusing Capacity, and Intrapulmonary Arteriovenous Anastomoses During Exercise
Published on: February 20, 2017
Isobaric counterdiffusion of carbon tetrafluoride breathing gas to prevent severe decompression sickness
Rachel M Lance1, Matthew S Makowski1,2,3, Richard T Mahon4
1Department of Anesthesiology, Duke University School of Medicine, Durham, NC 27710.
Abstract:
Decompression sickness (DCS) risk limits human undersea operations through tissue inert gas supersaturation and pathological bubble formation. Switching the inert breathing gas prior to decompression to a gas with lower diffusivity could allow faster and safer decompression. This principle was tested in 20 kg swine after a helium-oxygen (He/O2) dive using carbon tetrafluoride. Sedated swine breathed He/O2 79/21 at a pressure equivalent of 200 feet of seawater (714 kPa) in a hyperbaric chamber for 50 min until randomized to continuing He/O2 or switching to carbon tetrafluoride and oxygen (CF4/O2 79/21) for 10 min before decompression. The CF4/O2 group had reduced DCS with lower mortality, hypoxemia, pulmonary edema, venous gas emboli, gait disturbance, rash, and central nervous system hemorrhage. CF4/O2 has the potential to expand human exploration through enabling deeper dives, longer dives, and rapid decompression while maintaining safety.
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