Can't I Just Breathe Oxygen? The TRUTH About HBOT & Pressure
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- เผยแพร่เมื่อ 21 พ.ย. 2024
- Do you REALLY need pressure, or can you just breathe oxygen? Watch this video to find out!
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In this comprehensive video, we tackle a frequent question regarding Hyperbaric Oxygen Therapy (HBOT):
Is the pressure inside a hyperbaric chamber necessary, or can you just breathe oxygen without pressure and achieve similar results?
Watch this video for more details about why we need pressure in HBOT. We’ll discuss the limitations of oxygen therapy WITHOUT pressure, and how hyperbaric conditions amplify the body's oxygen absorption beyond red blood cell capacity, facilitating cell regeneration, increased immune response, inflammation reduction, stem cell signaling, angiogenesis, etc.
Join us as we break down complex medical concepts into easy-to-understand explanations, revealing how atmospheric pressure changes play a crucial role in the efficacy of HBOT and why, for many health concerns and goals, enriched oxygen at “surface level” pressure simply doesn't suffice.
Whether you're a health professional, a patient considering HBOT, or just curious about the science of healing, this video will provide valuable insights into why pressure is not just beneficial but critical in hyperbaric oxygen treatments.
After watching, be sure to check out our 'HBOT 101' playlist for more detailed discussions on how HBOT works at the cellular level and its various applications in medical treatments: • HBOT 101 Series
Remember to subscribe for more health-related content, leave a comment if you have questions or insights, and like this video if you find it informative.
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These posts and videos are not designed to and do not provide medical advice, professional diagnosis, opinion, treatment, or services to you or to any other individual.
You can, however, set up a consultation with us by sending an email to support@hbotusa.com.
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How about patient's with tracheostomy?
Can HBOT help with gastritis, for healing stomach lining?
►► Learn anything new? Have any questions? Let me know!
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very nice video ! At 1.3 ATA ambiant air or with a concentrator of 10 liter, what is the amount of oxygenation? 30%? 2 times? 3 times more oxygen?? Thanks!!
It's literally x1.3 what ever the % of O2 of what the breathing media starts out at. The math is Depth (ATA) X %of gas = the PPO2. So 100% O2 @ 10FSW is 1.3 x 1 = 1.3 PPO2 ATA or 130% Surface equivalent value. Ambient Air would be 1.3 X .21 = .27ATA or 27% SEV. At the Diver treatment depth of 60FSW its 2.81 X 1 = 2.81PPO2 or 281% O2 Surface equivalent.
👏 great video!
Thanks!
For people who live at higher elevations (ie. Denver, CO), would their hyperbaric treatment pressures be different than if they were being treated at sea level?
There have been no reports of significant differences in results. I believe the total amount of additional oxygen will be similar regardless of location. It appear to be a factor of changes in pressure relative to what someone is adapted to rather than absolute pressure itself.
We did a video on this that you may find helpful: th-cam.com/video/xKYDigemfUk/w-d-xo.html
So let me theorise. Lets say you would have place and people living long term at mountain that is 3000m above the sea. These people would somehow be adjusted to it and get 98% Q2 redcells saturation by breathing air at 3000m. If they would walk down to sea level their pressure would increase by fold of 1.3x (same as soft chambers) and so if they would breath Q2 for 2-3h and would go back up to mountain up to their normal they can eventually simulate hypobaric chamber treatment. Such a option is not available to people who live at sea level unless they would dive down to 5m depth in ocean and get +1.3 atm pressure and breath oxygen from water surface via hose. Have I got this right?
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