PEMF 8000 Decreases Inflammation
PEMF 8000 Decreases Inflammation. Normally an injured site, whether from arthritis, torn muscles, or any other condition, will be surrounded by inflammation. This can comprise lactic acids, calcium, and other deposits. Basically, the site is ‘hot’ with acidity. The increases in oxygen and blood flow bring with it increased alkalinity. This neutralizes the acidity, allowing the body to re-commence its own healing abilities. Magnets merely encourage this in a truly dramatic way.
Inflammation is a physiologic process initiated by the body to repair cellular damage in tissues by increasing the blood flow to the damaged area and increasing the number of good cells. The process of inflammation is generated and supported by the interaction of a number of immune cell types, with other cell types (like T cells) playing a regulatory role in the effect. Inflammation is a necessary and beneficial process, but it often persists longer than necessary, resulting in chronic inflammation. PEMFs have been found to reduce chronic, damaging inflammation.
“NASA has invested $3.5 million into four years of magnetic therapy studies
What did NASA’s studies conclude? Magnetic therapy is effective in healing refractory broken bones — bones that are unable to heal despite repeated surgical procedures. NASA also found magnetic therapy is successful in developing tissues for transplantation, repairing traumatized tissues, and moderating some neurodegenerative diseases such as Parkinson’s and Alzheimer’s. Lastly, previous studies also suggest that PEMF might be useful in the treatment of some muscle disorders.”
Magnetic therapy doesn’t just benefit astronauts
Clearly, magnetic therapy doesn’t just benefit astronauts. As NASA research concluded: On earth, this device is effective in the treatment of various muscle diseases, age- and cancer-related muscle atrophy, osteoporosis, and other bone diseases.
Currently, the Food and Drug Administration has cleared magnetic therapy for fusing broken bones, treating severe untreatable depression, and post-operative pain and swelling.”
In bacterial infections, early infiltration of the affected tissues by white blood cells is followed by the arrival of T cells, which kill bacteria. In this circumstance, eliminating of T cells can delay or stop healing. Conversely, in trauma-induced injury, T cells are less important to the healing process and may be harmful if present for too long. In this case, the elimination of T cells can minimize the unwanted effects of inflammation, accelerate healing, and reduce the risk of chronic inflammatory diseases. In chronic inflammatory diseases such as rheumatoid arthritis, psoriasis, or tendinitis, T cells support the persistence of the disease state, and removing them would be favorable.
Research shows us that PEMFs can induce the appropriate death of aged, chronic T lymphocytes, by actions on T cell membranes and key enzymes in cells. For example, PEMFs affect ion flow through specific cell membrane channels (like those for sodium, potassium, and calcium), which positively affect these enzymes.
Lymphocytic leukemias (also known as lymphoid or lymphoblastic leukemia) start in the cells that become lymphocytes. Lymphomas are also cancers that start in those cells. The main difference between lymphocytic leukemias and lymphomas is that in leukemia, the cancer cell is mainly in the bone marrow and blood, while in lymphoma it tends to be in lymph nodes and other tissues. Source
Once the tissue area starts detoxifying, the thermal benefits of pemf can begin. As the blood in our body continuously circulates, periodically, it comes close to the PEMF placed on the skin above it. In this magnetic field, the ions in the blood become agitated and are attracted to the magnet. As a result, atomic particles begin to spin inside the cell (known as ‘The Hall Effect’).
This ‘switching-on’ causes the body to stimulate its own beta-endorphin
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