PEMF : optimizing blood flow
Normal Blood Flow
Blood flows from the heart and into a miniature system of vessels called capillaries, which exchange water, oxygen, carbon dioxide, and many other nutrients and waste chemical substances between the blood and the tissues surrounding them. Blood is manufactured in the marrow of the bones and stays on active duty for approximately 100-120 days before it is recycled. Blood circulates through the body every 20 seconds.
Blood cell efficiency reduction
According to a study published by Intech, a typical human blood cell has a diameter of 5-10 μm and a surface area of approximately 135 μm2. The maximum efficiency of a blood cell is reached when all the surface area of a cell is free to perform its functions. Scientists examining blood cells during live cell analysis have observed a phenomenon called the Rouleaux effect. Blood cells can stick together like stacked coins forming a Rouleaux (clumping of cells). If two cells stack, the combined surface area is reduced from 270 μm2 (2 x 135 μm2) to 193 μm2 or 71%. Their efficiency is reduced further as the number of cells stacks up. A mass of eight or more cells reduces their total cellular efficiency by 50%.
Cell ineffectiveness due to the Rouleaux effect.
This fact is alarming enough, but another factor must be taken into account. Capillaries are so small (5-10 μm) that blood cells can only pass through them in single file. The Rouleaux Effect is not just about the stacking cells, but also the formation of Rouleaux stacks into combined branches. Cells that are stacked in this way cannot pass through the capillaries as capillaries can only accept free-flowing singular and independent red blood cells. Blood that cannot pass through the capillaries cannot absorb or dispel toxins or carbon dioxide; neither can it absorb and disperse nutrients or oxygen. Blood affected by the Rouleaux effect recirculates without having performed the task it is sent to undertake. If the blood cells are subjected to the Rouleaux effect, disease results because the flow of blood throughout the body is restricted, and the oxygen level in the blood is drastically reduced. Bacteria are anaerobic, meaning they thrive without oxygen and disease will thrive in blood deprived of oxygen. Parasites and viruses also thrive in anaerobic acidic environments. This problem affects all the major systems in the body, as the blood absorbs and diffuses oxygen and nutrients as well as picking up and dispelling toxins and carbon dioxide at a capillary level.
PEMF and the Rouleaux effect :
Blood passes on nutrients and oxygen while absorbing toxins or enzymes from all the major organs by use of capillaries. Blood cells which power down lose their charge and stick to one another, causing the Rouleaux effect. If the Rouleaux effect is present in the blood, these organs are not properly serviced by the blood. PEMF positively charges blood cells so that they repel one another, (like magnetic charges repel), making it impossible for them to stick together. PEMF maximizes the ability of the blood cells to perform their tasks because they cannot enter the capillaries of the major organs. The work of the lungs, liver, intestines and kidneys is optimized when proper and full blood flow can take place. When the blood is oxygenated, so are the organs and tissues, reducing disease, which can produce imbalances, sickness and eventually cancers.
(source : PDF)
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