"In Charge" Not related to job title, pez
At the time of my divorce it was the only positive thing I could think of about the divorce.
About the same time, I needed a user name.
In a rather bizarre, and perhaps even controversial, study that looked at the mating behavior of ibises, a tropical bird species that to some extent resembles a seagull, researchers from the University of Florida, Gainesville, (UFG) found that exposure to mercury disrupts the birds' endocrine systems and leads to decreased offspring. Not only this, mercury exposure was also found to cause some male ibises to pair up with other males rather than females, exhibiting a type of chemical-induced homosexuality that is rarely the topic of scientific inquiry.
Published in the journal Proceedings of the Royal Society B, this study reveals that methylmercury, the most toxic and easily absorbed form of mercury found in the environment, is capable of literally altering sexua| preference, at least in ibises. What has otherwise never been observed in wild ibises, homosexual behavior, was observed for the very first time in carefully controlled tests, suggesting that determined sexua| orientation could have a chemical component.
Peter Frederick, an ecologist at UFG, and his colleagues wanted to see how methylmercury, which is often hiding in wetlands and other natural environments, is affecting ibises. So the team collected 160 of the birds from breeding colonies in South Florida and divided them up into four test groups. Each group was composed of 20 males and 20 females, and after 90 days, the first three groups received either low, medium or high doses of mercury in their feed. The fourth group received control feed without mercury.
The birds in the first group received 0.05 parts per million (ppm) of mercury in their feed, while the second and third groups received up to 0.3 ppm. These amounts were carefully selected to reflect what wild birds living in the area and in other parts of the world might encounter in the wild from pollution runoff and other sources. The control group, of course, was designed to replicate wild ibises living in more remote areas that do not encounter mercury.
After three years of studying the birds and analyzing their various behaviors, the team came to some shocking conclusions. Not only were the mercury-exposed male ibises less prone to mate with females and produce offspring, but they were also more likely to try to mate with other males. And even when this proved to be a failure -- non-exposed ibises typically give up on trying to mate with certain females after the first year if they are unsuccessful -- many of the mercury-exposed birds continued in long-term relationships with other males, which is completely outside their normal behavioral pattern.
"Methylmercury seems to cause these behavioral changes by affecting the endocrine system, which controls the release of hormones in the body," Frederick is quoted as saying in the journal Nature. "That effect alters levels of the sex hormones testosterone and oestradiol in male ibises."
Though Frederick was quick to insist that the findings cannot simply be extrapolated to apply to humans, he did explain that chemical-induced endocrine disruption definitely caused male ibises to act much differently than they otherwise would in a non-polluted environment. And because of what we know from other research that looks at endocrine disruption in humans, it is possible that similar chemical effects may also be occurring in humans.
"Mercury is a known endocrine disruptor, but this is the first study of endocrine disruption in birds," adds Frederick. "This study links detrimental effects on biochemistry to decreased reproductive success very plausibly, through altered pairing and courtship behavior."
A similar but unrelated study on nematode worms published in the journal Current Biology back in 2007 found that the brain, which is highly affected by chemical exposure, determines sexua| orientation, at least in this particular species. The authors of this study concluded that sexua| attraction in nematode worms is literally wired one way or the other in their brains and that this wiring can be altered by external factors or inputs.
Sources for this article include:
http://www.nature.com
http://www.sciencedaily.com
http://www.livescience.com
http://science.naturalnews.com
http://science.naturalnews.com
What supporting nutrients and minerals did you take following removal? Do you take a selenium supplement? Use cilantro regularly? Chlorella?
How about EFA's? Be sure and get some organic Hemp seed oil or High quality fish oil.
Vitamin C, Vitamin B complex, vitamin D...etc. Large Doses regularly.
What were you Hospitalized for? Acting Bipolar?
Be sure and take some serious Probiotics if you can afford it.
Activist Post
Just a few decades ago, it was completely common to go to the dentist with a cavity or two and leave with several silver-colored fillings. And while these fillings were frequently referred to as “silver,” dental professionals were referring to the color, and certainly not the contents. Those fillings are mercury, and they are highly toxic. Now, about half of American dentists are mercury-free and the general population is starting to take note on the dangers of the dental amalgam mercury fillings in their mouths.
Mercury Fillings to be Banned Due to Health Hazards
The European Commission has paved the way, in recent weeks, for phasing out dental mercury, but it seems the United States is not ready.
According to the Commission:
Mercury and most of its compounds are highly toxic to humans, animals and ecosystems. High doses can be fatal to humans, but even relatively low doses can seriously affect the nervous system and have been linked with possible harmful effects on the cardiovascular, immune and reproductive systems.
Despite these devastating effects, even the E.U. stops short of mentioning the specific dangers of mercury fillings, instead focusing on the dangers of mercury in general.
But, if mercury can cause these problems when ingested, couldn’t it also cause problems as it sits in your mouth, potentially giving off vapors when damaged and leeching into your foods and saliva?
The procedures taken by trained dentists when removing these fillings is sufficient evidence of the dangers of mercury amalgam fillings. They must provide an alternate airflow for the patient, so they do not breath the contaminated air from the mouth. A dam must be used to limit swallowing and inhalation. Protective gear must be worn on the body and face, and air purifiers are used. These precautions indicate a serious risk is present.
But the United States has been ‘
shockingly slow‘ to do anything to reduce the use of these mercury fillings, particularly when compared with countries in Europe. Sweden has phased out dental amalgam completely and this latest move by the E.U. indicates it will soon be eliminated on the continent.
About 77 percent of Americans who are told their amalgam filling is mostly mercury would opt for an alternative, and would be willing to pay more for it. Resin composite fillings are more expensive, but are safe and well worth the cost. When the external costs of mercury fillings are considered (including damage to the environment and health care costs), the alternative fillings aren’t much more expensive at all. Another way to reduce costs and dentist visits? One simple solution to avoiding these fillings altogether is to learn
how to prevent cavities.
There is really nothing new about the dangers of mercury, or its
high presencein today’s society. It’s a highly toxic substance and science has recognized this for some time. However, many maintain dental amalgam is safe, despite research to the contrary. The good news is that the European Commission’s action may pave the way for a similar closer look by American officials– though we aren’t entirely hopeful, considering the EU’s commitment to GMO labeling has not rubbed off on the U.S. at all.
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Enthusiastic about Amalgam replacement/Mercury Chelation? Looking for support? Go to Amalgam Support Forum or to Chelation Support Forum or to Cutler Protocol.
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