"Women with active sun exposure habits were mainly at a lower risk of cardiovascular disease (CVD) and noncancer/non-CVD death as compared to those who avoided sun exposure."Second:
"As a result of their increased survival, the relative contribution of cancer death increased in these women."This finding may be a bit tricky to understand, so let's look at it a little closer. Because cancer risk increases along with biological age, the longer you live, the higher your cancer risk will be. Therefore, because increased sunlight exposure actually increases your longevity, it will also appear to increase your risk of cancer. But this does not necessarily mean that sunlight is intrinsically "carcinogenic," which is commonly assumed.
"Nonsmokers who avoided sun exposure had a life expectancy similar to smokers in the highest sun exposure group, indicating that avoidance of sun exposure is a risk factor for death of a similar magnitude as smoking."This is a powerful finding with profound implications. To say that "avoidance of sun exposure is a risk factor for death of a similar magnitude as smoking," is to point out that sunlight exposure, rather than being the constant lethal threat it is perceived to be, warranting the slathering on all over the body of synthetic sunscreens virtually guaranteed to cause harm from toxicant exposure, is essential to our health. In fact, according to the CDC, smoking is responsible for 6 million unnecessary deaths a year, and the "overall mortality among both male and female smokers in the United States is about three times higher than that among similar people who never smoked." And so, sunlight exposure may be so powerful an essential and necessary ingredient in human health that it might be considered medically unethical not to provide access to it, or to advise more routine exposure to it. The fourth and final observation of the study was that:
"Compared to the highest sun exposure group, life expectancy of avoiders of sun exposure was reduced by 0.6-2.1 years."Sunlight Attains Its Former Status As An Indispensable Component of Health While we can say that sunlight deficiency may contribute to lethal outcomes on par with smoking, we can rephrase the information positively by affirming that the Sun and its light may be as important to human health as is clean food or water. In fact, compelling research suggests that energy from the Sun drives the cellular bioenergetics of the biomachinery of our bodies through non-ATP dependent processes. Consider the work of Gerald Pollack, PhD, author of the "The 4th Phase of Water" (see video below), who explains how infrared energy of the Sun charges up the water molecules within our body (99% of the molecules in our bodies in number are water) like trillions of molecular batteries. When pertaining to cardiovascular health, sunlight energy in the form of infrared charged water molecules supports the heart's job of pumping the blood throughout the blood vessels by producing a form of highly structured and energized water known as Exclusion Zone water, or EZ water, and which may actually provide over 99.9% of the biomechanical energy needed to push the 1.2-1.5 gallons of blood in the average adult body through the literally thousands of miles of blood vessels. Provocative research also suggests the body contains a variety of photoacceptors/chromophores (e.g. cytochrome C oxidase) capable of accepting and utilizing sunlight to generate so-called "extra synthesis" of ATP. Additionally, melanin may absorb a wide range of the Sun's electromagnetic spectrum, converting it into useful energy and perhaps also biologically important information, even perhaps taking harmful gamma radiation and turning it into biologically useful energy. Even something as commonplace in the human diet as chlorophyll has recently been found to act as a means to enhanced the light-harvesting properties of animal cells. In fact, we reported recently on a study that found enhanced ATP production (without the expected concomitant uptick in reactive oxygen species production) through intermediary of chlorophyll metabolites that end up in the mitochondria of our cells following microbiome-mediated digestive processes.
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