Thursday, February 21, 2008

http://www.washingtonpost.com/wp-dyn/content/article/2008/02/19/AR2008021902398.html

Women who sleep in dark neighborhoods are less likely to get breast cancer. I would attribute this to only a few things. Power lines produce beta radiation and high power electromagnetic fields. These factors can influence biology. Otherwise, it would be from increased generic pollution from population density. But if this study is evenly weighted the electrical fields, which have been shown to influence health in other ways, are contributors.

Friday, November 2, 2007

It is my belief that electromagnetic entrainment functions can be performed against or on living organisms, especially microorganisms and divergent biologies, to the benefit of the patient. I believe that an appropriate em field/signal will tear apart the em fields of any disease that is a sufficient em differentiation from the host, all of which probably must be to extract and use meaningful chemical energy from the host on which to survive.

Combined with Dr Bob Beck's blood electrification and silver nanoparticles this should cure the majority of human pathological disease, leaving disorders and syndromes and electrical injuries from spiritual interactions, as well as trauma.

Saturday, October 27, 2007

http://www.damninteresting.com/?p=871&id=d1555()|

This man from the 1890's noticed that sterptococcyx infections on tumor sites triggered immune system response.

Saturday, September 22, 2007

John Kanzius & Lake

A majority of food colorings appear to contain *petroleum* and other carcinogenic products. It is highly advisable to avoid food colorings when eating. Eat 'around' them.

John Kanzius has a nanoparticle & radio wave technology that cancer cells selectively uptake and are fried by when exposed to radio waves. This is better than radiation treatment.

Monday, July 30, 2007

John Kanzius



Metal nanoparticles are accepted by cancer cells, but not other cells. They then are cooked with radio waves that resonate with the metals. The cancer cells grow hot and die, but normal cells are unaffected. Cancer solved, yes? Are there cancers without this property?

We have basically defeated cancer. Even late stage cancers can likely be cured by this method, by affecting the February 9, 2007 gene codon setting that would prevent 60% of cancers, or by introducing a specialized bacteria for infection of a cancer cells only, which would then alert the immune system and destroy them. Hydrogen peroxide and benzene treatment are also interesting. The pharmaceutical industry has fought these measures. The health insurance industry might want to fight for their use.

Let us now discover precisely what happens to *cause* a cancer to develop genetically, electromagnetically.

Tuesday, July 17, 2007

http://www.damninteresting.com/?p=871&id=d1555()|

It seems that a way to cure cancer discovered at the turn of the *20th* century is to infect the area with bacteria. Today we are trying special viruses =). The body then recognizes the foreign material as suspicious, and destroys it.

We do not use it commonly because we don't know quite how it works. It may be that the bacteria's em field is detected by the immunological systems. The body probably tries to destroy anything with an em field distinctly different from the body, except babies in a uterus.

Bacteria has a different em signature, and attracts immune function. Cancer's em is somewhat to slightly different, but not different enough to arouse attention. Once the attention is there, the cancer's em is noticed and tagged. It may be that the immune system tags a thing by its different em signal, or finds the location or is activated by em, as well as by bumping into outstanding chemical receptors. It is very difficult for a disease to emulate the em of an entire human. Once either of these triggers has been found, the cell or item is tagged for destruction and is worked over.

Tuesday, July 3, 2007

http://www.physorg.com/news102516595.html

Consider bioEM.

"As a fertilized egg develops into a full grown adult, mammalian cells make many crucial decisions — closing doors of opportunity as they adopt careers as liver cells, skin cells, or neurons. One of the most fundamental mysteries in biomedicine is how cells make such different career decisions despite having exactly the same DNA."