Wal,
Some answers:
- Your lungs can almost never get over 18.5% O2, even with brutal hyperventilation. Trust me, I've tried it with an O2 monitor. Keep in mind that as you inhale, you also saturate the air with water vapor which takes up a few percent. Given that during extreme hyperventilation, you might get down to 2.0% CO2, then that puts the upper limit at 19% O2 even without water vapour. In reality you'll start a dive at around 3.5 to 4.2% CO2, any less and you'll be too hypocapnic. At 4% CO2 your max O2 is 16-17%.
- I think your blood oxygen store is just as usable as your lung store. Think of it this way: at SaO2 = 50%, the amount of oxygen in one ml of blood is different, depending on your hemoglobin level. A person with 21 g/dl has 50% more O2 per ml compared to someone with 14 g/dl, and that is true for all saturations of hemoglobin. So it seems to me that the SaO2 blackout point would decrease as your hemoglobin concentration increases.
As a further example, imagine someone extremely anemic with just 3 or 4 g/dl of hemoglobin. In such a person their hemoglobin would have to be almost 100% saturated with oxygen just to remain conscious. So, to generalize that all people black out around 50% SaO2 seems wrong, because it seems to depend strongly on your hemoglobin level.
Some answers:
- Your lungs can almost never get over 18.5% O2, even with brutal hyperventilation. Trust me, I've tried it with an O2 monitor. Keep in mind that as you inhale, you also saturate the air with water vapor which takes up a few percent. Given that during extreme hyperventilation, you might get down to 2.0% CO2, then that puts the upper limit at 19% O2 even without water vapour. In reality you'll start a dive at around 3.5 to 4.2% CO2, any less and you'll be too hypocapnic. At 4% CO2 your max O2 is 16-17%.
- I think your blood oxygen store is just as usable as your lung store. Think of it this way: at SaO2 = 50%, the amount of oxygen in one ml of blood is different, depending on your hemoglobin level. A person with 21 g/dl has 50% more O2 per ml compared to someone with 14 g/dl, and that is true for all saturations of hemoglobin. So it seems to me that the SaO2 blackout point would decrease as your hemoglobin concentration increases.
As a further example, imagine someone extremely anemic with just 3 or 4 g/dl of hemoglobin. In such a person their hemoglobin would have to be almost 100% saturated with oxygen just to remain conscious. So, to generalize that all people black out around 50% SaO2 seems wrong, because it seems to depend strongly on your hemoglobin level.