Describe The Conditions And Location Associated With This Flow Rate Heart Disease Means Heavy Breathing 24-7

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Heart Disease Means Heavy Breathing 24-7

In 1995 the British Heart Journal published a study (Clark et al, 1995) by researchers from the National Heart and Lung Institute in London. The respiratory rate of all 88 cardiac patients at rest ranged from 10 to 18 l/min. This is about 2-3 times more than usual: 6 l / min at rest for a 70-kg man.

In 2000 a study published in the Chest magazine by a group of cardiologists in the United States revealed that patients with chronic heart failure received 14 to 18 l / min (Johnson et al, 2000).

Recently, Greek doctors at the Onassis Heart Surgery Center in Athens recorded ventilatory values ​​ranging from 11 to 19 l/min in cardiac patients in their hospital (Dimopoulou et al, 2001).

Moreover, about ten years ago a group of 10 medical doctors published their findings, on the breathing of heart patients, in the American Journal of Cardiology. These MDs conducted a ventilator stimulation trial on more than 200 patients. Their patients were asked to ventilate. It was found that all patients underwent coronary artery bypass grafting (Nakao et al, 1997). The title of their study was “Hyperventilation as a special test for detection of artery spasm”.

How does ventilation affect the heart? The main effect is due to CO2 deficiency.

* Low blood CO2 levels cause spasm of arteries and arterioles throughout the body. That leads to two problems. First, as a group of Japanese medical professionals found, in conditions of CO2 deficiency, blood flow to the heart muscle decreases (Okazaki et al, 1991). Therefore, heart cells receive less oxygen, glucose and other nutrients. Second, since small blood vessels are the main contributors to the overall resistance to blood flow, a lack of CO2 increases resistance to blood flow and makes the heart work harder.

* The suppressed Bohr effect, due to the low value of CO2 in the blood, further reduces the oxygenation of the heart muscle (oxygen cannot be released well by the red blood cells causing tissue hypoxia). On the other hand, it is known that low oxygen in the heart is the cause of angina pain.

* Excited nerve cells in the heart (cells called pacemakers) disrupt the normal coordination and coordination of the heart muscle. (The valves should open and close at the right time, as the engine is well tuned.). Desynchronization can make the entire process of blood pumping ineffective or more energy- and oxygen-demanding.

* Abnormal fat metabolism leads, as Russian medical studies have revealed, to increase blood cholesterol levels in some people. That condition gradually, over weeks or months, produces cholesterol deposits in the walls of the blood vessels of the genetic population. Such deposits can cause primary hypertension. As research published in Russia suggests, the level of excessive breathing has a direct relationship with the level of cholesterol in the blood.

* Mouth breathing (both at rest and during exercise) is an additional unpleasant stimulus in most cardiac patients. It prevents the normal absorption of nitric oxide (a hormone and a potent vasoconstrictor) that builds up in the nasal passages.

Which parts of the cardiovascular system are most affected?

That depends on genetics and environmental factors. There are many things that can affect the normal functioning of the cardiovascular system. People are different. Some may suffer from chronic heart disease, others from high blood pressure, or stroke, or various disorders of the heart muscle.

Therefore, it makes sense to say that heart disease is a serious respiratory disease. It is only present in chronic respiratory conditions. Heart patients breathe more when they are at rest, and even more so during the acute phase. If heart patients slow down and normalize their breathing rate, they don’t feel their symptoms and don’t need their medications. Currently, there is only one self-oxygenation therapy practiced by hundreds of doctors and medical doctors in Russia and other countries. It is called the Buteyko breathing system.

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