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We Do Not Notice When We Hyperventilate!
Practical medical evidence indicates that people can breathe 2-4 times more air every minute and be unaware that their breathing is too heavy. This is exactly the case for patients with heart disease, asthma, bronchitis, chronic fatigue, panic attacks, sleeping problems and many other conditions. The physiological norm for breathing is about 4-6 liters per minute, while medical research found 10-20 liters for the sick people.
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Thousands of medical studies showed and proved other negative effects of overbreathing, such as, abnormal excitability of all nerve cells, bronchoconstriction, reduced activity of many immune cells, muscular spasms, and biochemical changes in rates and directions of many chemical reactions that require normal CO2 content. The completion of this article on bronchitis aids was our prerogative since the past one month. However, we completed it within a matter of fifteen days!
Usually, people notice that their breathing is heavy when they breathe more than 25 l/min at rest (or 4-6 times the norm!). Such acute episodes of overbreathing are normal during stroke, and asthma, heart, and epilepsy attacks. This can be considered to be a valuable article on bronchitis aids. It is because there is so much to learn about bronchitis aids here.
Restoration of oxygenation and normal breathing parameters are the main goals of the Buteyko breathing method. The method was developed by Russian Doctor Konstantin Buteyko, who trained about 200 Russian medical professionals to apply this technique for various health conditions. These doctors found that if the patient manage to normalize main parameters of breathing, no symptoms and no medication are required for asthma, bronchitis, heart disease, and many other conditions. Using great confidence in ourselves, we endeavored to write such a long article on bronchitis aids. Such is the amount of matter found on bronchitis aids.
First, CO2 (carbon dioxide), the gas we exhale, is crucial for dilation of blood vessels. Check it yourself. Start to breathe very heavy in and out just for 1-2 minutes, and you can lose consciousness (faint or pass out) due to low blood supply for the brain. There is another simple test to see the effects of breathing on blood flow. When you get a small accidental bleeding cut, hold your breath and accumulate CO Your blood losses can increase 2-5 times! But in real life, pain and sight of blood make breathing heavier preventing large blood losses and providing valuable time for blood to coagulate. It is a mechanism useful for our survival likely based on natural selection. The sources used for the information for this article on bronchitis aids are all dependable ones. This is so that there be no confusion in the authenticity of the article.
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| "I felt miserable so i went to doctor and he said i had a bronchitis. he gave me antibiotic but even 2 weeks later i was still coughing. i got the bronovil remedy and 3 days later my cough went away." Betty - California |
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Why is this? Air is weightless, and breathing muscles are powerful. During rigorous physical exercise we can breathe up to 100-150 l/min. Some athletes can breathe up to 200 l/min. So it is easy to breathe "only" 10-15 l/min at rest (only 10% of our maximum capacity), throughout the day and night and not be aware of this rate of breathing. However, in health, we should breathe only about 3-4% of our maximum breathing rate.
The most surprising effect of any form of hyperventilation is reduced body oxygenation and shorter stress-free breath holding time (index of oxygenation). Why? There are 2 related biochemical effects of over-breathing. It was with great relief we ended writing on bronchitis aids. There was just too much information to write, that we were starting to lose hopes on it's completion!
The second main cause of tissue hypoxia for hyperventilators relates to the Bohr effect, a physiological law discovered about a century ago. This law explains how, why, and where our red blood cells release oxygen. The release takes place in those tissues that have higher CO2 content. Hence, those organs and muscles that produce more CO2 get more O2. Try to imagine the picture: the blood arrives in certain tissues and releases more oxygen in the places with high CO2 concentrations. But when we hyperventilate, low CO2 content in all tissues suppresses O2 release from hemoglobin cells and we suffer from hypoxia.
While Russian doctors accumulated huge clinical experience, very little was translated in English. My educational website http://www.normalbreathing.com has some translations of original Russian publications devoted to this drug-free technique.
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