Difference between revisions of "Intermittent Hypoxic Exposure"
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==See Also== | ==See Also== | ||
− | * [[Altitude Training | + | * [[The Science of Altitude Training]] |
* [[Comparison of Altitude Training Systems]] | * [[Comparison of Altitude Training Systems]] | ||
* [[Book Review - Altitude Training and Athletic Performance]] | * [[Book Review - Altitude Training and Athletic Performance]] | ||
− | * [[Intermittent Hypoxic Exposure | + | * [[The Science of Intermittent Hypoxic Exposure]] |
* [[AltoLab]] | * [[AltoLab]] | ||
* [[Viagra, Exercise and Altitude]] | * [[Viagra, Exercise and Altitude]] | ||
* [[Pulse Oximeter]] | * [[Pulse Oximeter]] | ||
* [[Hypoxic Timer]] | * [[Hypoxic Timer]] |
Revision as of 12:01, 27 March 2013
Being exposed to low oxygen for short periods has been shown to provide additional benefits beyond other altitude training approaches. The technique usually involves breathing air with reduced oxygen content for shorter periods. IHE can provide the increase in red blood cell count as longer periods, as well as improving oxygen delivery to the muscles. IHE is normally performed at rest rather than when training, and uses a Pulse Oximeter to verify the impact of the hypoxia. Also, IHE uses lower oxygen content than other forms of altitude training. For details of the science behind IHE, see Intermittent Hypoxic Exposure 101. It is also possible to exercise while exposed to lower oxygen levels, referred to as Intermittent Hypoxic Training.
1 Benefits of IHE
- Improved efficiency in oxygen usage (mitochondrial respiration)
- Increased blood oxygen carrying capacity (not all studies show this)
- Greater resistance to free radicals through improved anti-oxidant defenses
- Adaption in breathing patterns at altitude
- A shift from protein to fat as an energy source
- No reduction in training intensity compared with Live High, Train High
- No impaired sleep compared with Live High, Train Low