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New scientific breakthrough proves why acupuncture works

Posted on June 3, 2012 at 6:45 AM Comments comments (1273)

By Tima Vlasto, Holistic Science & Spirit Examiner


Acupuncture scientific breakthrough

New groundbreaking research shows that the insertion of an acupuncture needle into the skin disrupts the branching point of nerves called C fibres. These C fibres transmit low-grade sensory information over very long distances by using Merkel cells as intermediaries. Dr. Morry Silberstein of the Curtin University of Technology will publish his research in the Journal of Theoretical Biology later this year.


We have never really had a scientific explanation for how acupuncture actually works,” he said. In the absence of a scientific rationale, acupuncture has not been widely used in the mainstream medical community. If we can explain the process scientifically, we can open it to full scientific scrutiny and develop ways to use it as a part of medical treatments.”

Dr. Silberstein mentions that they have known, for some time, that the acupuncture points show lower electrical resistance than other nearby areas of the skin. His research specifically pinpoints that the C fibres actually branch exactly at acupuncture points. Scientists don’t know exactly what role C fibres play in the nervous system, but Dr. Silverstein theorizes that the bundle of nerves exists to maintain arousal or wakefulness. The insertion of the acupuncture needle disrupts this circuit and numbs our sensitivity to pain.”


Acupuncture for pain relief is actually being taught to American Air Force physicians deployed to Iraq and Afghanistan (2009) by Dr. Richard Niemtzow MD, PhD, MPH and editor of Medical Acupuncture. His technique called “Battlefield Acupuncture” relieves severe pain for several days and is a variation of acupuncture, which inserts very tiny semi-permanent needles at specific acupoints on the skin of the ear that blocks pain signals from reaching the brain.


"This is one of the fastest pain attenuators in existence," said Dr. Niemtzow, who is the Consultant for complementary and alternative medicine for the Surgeon General of the Air Force, and is affiliated with Uniformed Services University of the Health Sciences in Bethesda. "The pain can be gone in five minutes."


It has taken quite a long time for Western medicine to embrace acupuncture even though it was introduced in the early 1970’s after contacts with China improved.


Professor Tsuei mentions: “In 1972 the respected New York Times columnist James Reston underwent an emergency appendectomy while in China. He later wrote about acupuncture treatment for post-operative pain that was very successful. This report attracted attention and many American physicians and researchers went to China to observe and learn acupuncture techniques.”


Since then, only a few controlled studies were done in the West. Yale researchers proved its effectiveness for cocaine addiction in 2000 and published their findings in the August 14 issue of the Archives of Internal Medicine.


A North Korean researcher, Kim Bonghan, published papers in the early 1960’s and his research was confirmed by the Japanese researchers Fujiwara and Yu in 1967. Unfortunately his research took almost 40 years to be confirmed through studies done on rats, rabbit and pigs with Stereo-microscope photographs and electron microsopy.




The amazing photo shows the stereomicroscopic image of acupuncture meridians:


“Assemblies of tubular structures 30 to 100 micro-meters wide (red blood cells are 6-8 micro-meters in diameter). Apparently these structures have remained undiscovered for so long because they are almost transparent and so thin that they are barely visible with low-magnification surgical microscopes. They are also easily confused with fibrin, which coagulates and obscures these structures when there is bleeding in dissected tissues. Now that they have been rediscovered, researchers are investigating their composition and function. The tubular structures that make up Bonghan channels contain a flowing liquid that includes abundant hyaluronic acid, a substance that cushions and lubricates the joints, eyes, skin and even heart valves. Also visible in the photographs are small granules of DNA or microcells about 1-2 micro-meters in diameter that contain chromosomal material highly reactive to stem-cell antibody stains. When these cells were isolated and then induced to differentiate, they grew into cells of all three germ layers. These may be our body's natural source of pluripotent adult stem cells, with the potential to develop into any cell in the body”


Russian researchers in 1991 at The Institute for Clinical and Experimental Medicine in Novosibirsk, USSR, in a research project lasting several years, discovered how the human body conducts light. They found that the light conducting ability of the human body exists only along the meridians, and can enter and exit only along the acupuncture points. Dr. Kaznachejew, a professor of physics said:


“This seems to prove that we have a light transferal system in our body somewhat like optical fiber. It appears that the light can even travel when the light canal is bent, or totally twisted. The light appears to be reflected from the inner surface, appearing to go in some sort of zigzag track. You can explain this through traditional electromagnetic light theory as it is used in optical fiber communications.”


This finding has been confirmed by a 1992 study in the Journal of Traditional Chinese Medicine and a 2005 study in the Journal of Alternative and Complementary Medicine where moxibustion and infrared thermography were used to trace meridian pathways.


There might be a “light body” after all.


Read more of Tima Vlasto's articles 



A Randomized Controlled Trial of Auricular Acupuncture for Cocaine Dependence.S. Kelly Avants, PhD; Arthur Margolin, PhD; Theodore R. Holford, PhD; Thomas R. Kosten, MD Arch Intern Med. 2000;160:2305-2312.


Immunomodulatory Effects of Acupuncture in the Treatment of Allergic Asthma: A Randomized Controlled Study.Stefanie Joos, M.D. Department of Anaesthetics, University of Heidelberg, Heidelberg, Germany.




Meridians conduct light by Dr. Sergei Pankratov, Moskow, Published by Raum and Zeit, Germany,1991.Translated from the German by Wolfgang Mitschrich


Bonghan Channels in Acupuncture By David Milbradt, LAc, Acupunture Today


Bonghan Duct and Acupuncture Meridian as Optical Channel of Biophoton


Curtin University of Technology These C fibres transmit low-grade sensory information over very long distances by using Merkel cells as intermediaries.


Scientific Evidence in Support of Acupuncture and Meridian Theory Professor Julia J. Tsuei M.D., F.A.C.O.G.


Medical acupuncture gaining acceptance by the US Air Force


Acupuncture is promising treatment for cocaine addiction, Yale researchers find


Photo Credit: Acupuncture Today: A stereomicroscopic image of the lymphatic vessel around the caudal vena cava of a rat. The photograph (left) and its illustration (right) show the novel threadlike structure (solid arrow) that passes throw the lymphatic valve (open arrow). The photograph was taken in vivo and in situ, and a piece of black paper was put under the lymphatic vessel to exhibit the target clearly. The scale bar is 100 micro-meters..

Tags:acupuncture, Alternative Medicine, discoveries, health, Medicine, Science

Tima Vlasto, Holistic Science & Spirit Examiner

October 12, 2009

Origingally Posted Here:


Can't find Potassium Iodide? Use BORAX, a safe & inexpensive natural mineral for Radiation Protection

Posted on March 17, 2011 at 1:35 AM Comments comments (57)
Hi All –

I’ve been seeing several posts and getting a few phone calls that appear to suggest a concern for the radiation fallout from the Japanese Nuclear Reactor meltdowns. These posts suggest that Potassium Iodide, the most widely recommended supplement to protect oneself against radiation poisoning,  is being extremely hard to come by and there are stories of it being hoarded.

However, there is an alternative remedy of a very abundant natural mineral you can use – Boron, which can be found in Borax laundry detergent. It is inexpensive, safe and effective.

The standard way of protecting yourself from a nuclear blast is to make sure you have potassium iodide pills. If

the big one goes off, you eat all this potassium iodine and it just drags the radiation right through your system. 

The backup system to force-fed potassium iodide in severe, acute radioactive poisoning is boron.

 In the entire table of elements, including subatomic particles, there is only one mineral that is capable of

accepting and ionizing radiation that never changes the innards or the nucleus of the cell — boron. The protons and the neutrons do not change under any conditions in the boron molecule. Boron can take radiation and release it without upsetting this very delicate balance ( http://en.wikipedia.org/wiki/Boron ;).

That makes Boron an excellent candidate to have into your system, whether the radiation be from excessive sunlight or spent uranium bullets that’s being ionized and released into the atmosphere. When that mineral is present in your system, your DNA creates a much better buffering system to ward off radiation. Even when chromosome breaks do occur, they are much more easily repaired and maintained by the system.


Suggested Boron Capsule form: 4- 10 mg/day. If it is in a multivitamin, it's just 2 mg.

Borax: Yes, this is the laundry detergent. It is quite safe, it has been for years. The Boron content of Borax is approx 11 %. While Borax is classified as a chemical, but it is usually a mined product – meaning that it is a natural mineral complex (http://www.galleries.com/minerals/carbonat/borax/borax.htm). It has some H202 quality and emulsifies fat. Hence its use as laundry powder. The best info on Borax use is at earth clinic; http://www.earthclinic.com/Remedies/borax_questions.html

Borax dosage: standard dose is 1/8 of a level teaspoon in one liter of water for women and 1/4 for men.

Alternatively, you can make capsules and down it with a large glass of water. Studies suggest the same dosage to children but they did not have the remedy every day; more like every other day or less. However, as with Iodine and most / all other supplements, dosage are individual; I recommend starting slow and low in case you are sensitive to it.


Fruits like apples, oranges, almonds, red grapes, pear, plum, kiwi, sultanas, dates, vegetables, soybeans and nuts are rich sources of Boron. Chickpeas, borlotti beans, hazel nuts, currants; peanut butter, red kidney beans, tomato, lentils, olive, onion, potato wine, beer, etcetera  are also notable sources of Boron (http://www.truehealthyproducts.com/tag/natural-sources-of-boron).



Boron is very safe. The LD 50 (lethal dose in 50% of animal subjects) is about 3-6g per Kilo of body weight. This means that doses up to 18 mg of boron daily appear to be safe for adults even if taken for prolonged periods of time. This is double the dose of even the most liberal amounts suggested by advocates of boron use. There is also no evidence to suggest that boron is either carcinogenic or mutagenic.

In 1904, human volunteers consuming greater than 500 mg of boric acid daily (this is equivalent to about 180 mg of elemental boron) showed symptoms of poor appetite and digestive problems. Symptoms of acute toxicity typically include nausea, diarrhea and abdominal cramps.



Ceradyne Inc., the maker of specialized ceramics, offered on Monday to help Japan control the radiation at its failing nuclear power plants with the boron products the Costa Mesa company produces.

"Elemental boron is widely recognized as a neutron absorber," said Joel P. Moskowitz, Ceradyne chief executive. “The Russians used boron carbide during the Chernobyl nuclear power plant meltdown. It is routinely used at nuclear power plants to reduce pipe corrosion and as a safety element because it will absorb extra radiation. “                                                                                                                                                

Chernobyl  - April 26, 1986  

Helicopters dropped boron and sand onto the reactor to prevent more radiation from leaking into the environment.


Tokaimura, Japan - September 30, 1999

On September 30, 1999, there was an accident at a nuclear power facility ran by JCO Company in Tokaimura, Japan, when an improper mix caused a nuclear fission chain reaction explosion to occur. The company brought mass amounts of boron to the plant to absorb the radiation.



Space radiation is qualitatively different from the radiation humans encounter on Earth. Once astronauts leave the Earth's protective magnetic field and atmosphere, they become exposed to ionizing radiation in the form of charged atomic particles traveling at close to the speed of light. Highly charged, high-energy particles known as HZE particles pose the greatest risk to humans in space. A long-term exposure to this radiation can lead to DNA damage and cancer. One of the shielding materials under study is boron 10. Scientists have known about the ability of boron 10 to capture neutrons since the 1930s and use it as a radiation shield in geiger counters as well as a shielding layer in nuclear reactors. Boron is a non-metallic chemical element that is used in numerous applications, from use in its elemental form as a dopant in the semiconductor industry to boron compounds that play important roles as light structural materials, nontoxic insecticides and preservatives, and reagents for chemical synthesis.



from: http://aor.ca/int/related_research/boron.php


Boron is the fifth element in the periodic table of elements and has a number of important functions that have only recently been discovered and have yet to be fully appreciated. Boron is essential for plant growth, and it has recently been shown to be essential in at least one species of animal (zebra fish), with evidence mounting that it is probably essential for humans as well. The first edition of The Merck Manual (1899) credits boric acid, the most common form of boron, with being a useful treatment for amenorrhea, dysmenorrhea, epilepsy and elevated uric acid.


Prior to 1981, boron was thought to be all but irrelevant in daily human nutrition. Since then, there have been a number of animal and human studies (including one by the U.S. Department of Agriculture) determining boron as essential for the hormonal influence of estrogen and testosterone as well as bone metabolism. It is also purported to have anti-carcinogenic potential as well as preserving cognitive function. From a scientific perspective, boron appears to have earned its place on our list of vital nutrients in the orchestration of health. It has, however, yet to receive any official recognition as an essential mineral – yet.


Sources of Boron

Boron is found in non-citrus fruits such as plums, red grapes, apples, pears, and avocados, as well as in legumes and nuts. It is also present in significant amounts in coffee and red wine. Dried fruits contain a much higher amount of boron than fresh fruit. Although boron currently is not considered an essential element in the diet of humans, many scientists believe it merits the status as an essential "ultratrace" element.




Much of the recent research on boron’s anti-carcinogenic potential has been particularly centered on prostate cancer. In a study presented at the annual Experimental Biology conference in Florida in 2001, boron was shown to have reduced the incidence of prostate cancer development by 64%. The study, from the Cancer Epidemiology Training Program at the UCLA School of Public Health, compared dietary patterns of 76 men with prostate cancer to that of 7,651 men without it. The greater the quantity of boron-rich foods these men consumed, the greater their reduction in risk of being diagnosed with prostate cancer.


Another study published in the 2002 Proceedings of the American Association of Cancer Research attempted to isolate the mechanism of action for boron’s effect on prostate cancer. While the exact explanation of the mechanism remained elusive, it was hypothesized that the prostate specific antigen (PSA) is actually an enzyme (a serine protease) that frees IGF-1 from insulin-like growth factor binding protein. This freed IGF-1 has been shown to promote the growth of prostate cancer. Boron’s effect is to inhibit the activity of the PSA enzyme, thus decreasing the amount of freed IGF-1 which in turn should decrease the growth of prostate cancer tumors.




Calcium-Magnesium <=> Boron Interactions


Large numbers of human experiments show that boron is vitally involved in bone metabolism. It is well accepted that calcium and magnesium are important constituents of healthy bone, and in situations of adequate calcium supply but deficient magnesium resources, boron appears to substitute for magnesium during the process of bone formation. Under such conditions, the concentration of boron within bone tissue increases.


Boron's effect on bone appears to be mediated by its ability to reduce the urinary excretion of calcium and magnesium, and this ability is due to its actions in the kidney. As stated above, this calcium-preserving effect of boron becomes pronounced in circumstances in which dietary magnesium is low. Therefore, boron is in effect acting as a backup system for magnesium in order to preserve calcium in the blood and reduce urinary calcium loss.


The effect of boron intake was analyzed in a human study involving 12 post-menopausal women not on estrogen replacement therapy. Patients were first given a boron-deficient diet consisting of 0.25 mg of boron daily for 119 days. This was followed by a 48-day period in which the same patients received boron supplementation at a dose of 3 mg per day. Patients were also studied during periods of adequate magnesium intake versus magnesium deficiency. Deprivation of boron and/or magnesium caused changes that are similar to those seen in women with post-menopausal osteoporosis, including increased loss of urinary calcium. However, in women receiving 3 mg of boron per day, urinary losses of both calcium and magnesium were significantly diminished, especially if dietary magnesium was low. Also noted were increased levels of plasma ionized calcium, beta estradiol, and testosterone.


Boron also appears to enhance vitamin D, and although there is likely a relationship between this and it’s calcium-preserving effect, an accurate description for the mechanism of action of boron’s vitamin D enhancement is unclear.




Boron’s aforementioned theorized capability to inhibit carcinogenic enzymes led researchers to believe that it may also inhibit other harmful enzymatic activity as well. Boron has been shown to inhibit cyclooxygenase (COX) and lipoxygenase (LOX), two enzymes that mediate the inflammatory cascade and are pertinent to therapies directed against inflammatory conditions. Such anti-inflammatory capabilities of boron are clearly pertinent to its anti-cancer effect, because the reduction of COX II and LOX enzymes lead to a decrease in prostaglandin E2 (PGE2) and other unfavorable eicosanoids such as leukotrienes. We now know that omega-6 fatty acid metabolism that is allowed to continue down this pathway represents a vital stimulus for angiogenesis and cancer growth. We also now know that there are many parallels between the medical applications of non-steroidal anti-inflammatory drugs (NSAIDs) and the biological properties of boron.




Prostaglandins and leukotrienes are mediators of inflammatory conditions such as degenerative joint disease and osteoarthritis. PGE2 and leukotrienes have been implicated in causing problems with joint swelling, restricted joint motion, and other arthritic complaints. There is evidence that boron may inhibit COX II and PGE2 by suppressing nuclear factor kappa beta (NfkappaB)—a proinflammatory cytokine. There is also evidence along these lines that boron can relieve arthritic conditions, which are essentially conditions of inflammation. These findings are clinically supported by evidence showing that areas of the world with low levels of boron in the soil have a higher percentage of people suffering from arthritis in comparison to regions with higher soil levels of boron. In fact, epidemiologic evidence shows that in areas of the world where boron intake is 1 mg or less per day, the estimated incidence of arthritis ranges from 20%-70%, whereas in areas of the world where boron intake is usually 3-10 mg, the estimated incidence of arthritis ranges from 0-10%. In a study of 20 patients with osteoarthritis, the 50% who received a daily supplement of 6 mg of boron all reported improvement (less pain on movement), compared to only 10% who reported likewise in the control group.


In another study, it was revealed that bones adjacent to joints with osteoarthritis tend to be less mineralized and have significantly lower concentrations of boron.




It is now commonly accepted that the routine use of NSAIDs significantly reduces the incidence of Alzheimer's disease. Given their aforementioned similarities, it stands to reason that boron may also have a positive effect on cognitive function.


Studies were conducted involving the analysis of brain wave patterns using an electroencephalogram (EEG) based on tests designed to measure cognition and motor skills in human subjects who were given diets that were either boron-rich (approximately 3.25 mg boron/2000 kcal/day) or boron-deficient (approximately 0.25 mg boron/2000 kcal/day). The EEG and showed an increased proportion of low-frequency activity in those subjects on the boron-deprived diet. The authors of these studies concluded that boron appears to play a significant role in human brain function and cognitive performance, and that it is an essential nutrient.


In Conclusion


Although Boron has yet to receive official entry into the ranks of the much maligned yet all-powerful RDA charts, there is strong evidence to suggest that it soon will. Along with a number of other minerals, boron may soon be recognized as essential since it has undergone publicly-funded studies recognized by government agencies, some of whom are under increasing pressure to expand the list of minerals officially listed in the RDA charts.



Compton Rom


Magnesium Stearate - TOXIC

Posted on March 1, 2011 at 3:35 PM Comments comments (3)
Magnesium Stearate (all stearates)
Magnesium stearate as well as all other stearates should never be used in a nutritional supplement but is commonly done so.
Magnesium stearate, stearic acid and ascorbyl palmitate, are all made by hydrogenating cottonseed or palm oil.  First cottonseed oil has the highest content of pesticide residue of all the commercial oils and now most of the non-organic cotton is produced via GMO. Now one has to question the use of a hydrogenated oil in our supplements when the health industry is telling people to avoid hydrogenated oils in their diet (and correctly so).
In the hydrogenation process, the oil is subjected to high heat and pressure in the presence of a metal catalyst (which may contaminate the end product) for several hours, creating a hydrogenated fat. (As you have learned in the newsletters on liver/gallbladder flushes, hydrogenated oils are at the root cause of the liver producing liver and gallstones which need to be eliminated to achieve real health) and should not be added to our supplement regimen.
The purpose of the use of stearates is that they are added to the raw materials as lubricants so that the production machinery will run at maximum speeds and these fatty substances coat every particle of the nutrients so that the particles will flow rapidly.
According to an article published in the Journal of Immunology back in 1990, stearates pose a problem with the suppressing the action of T-cells and T-cells are a key component of our immune system.
Consider these facts:
  1. Magnesium stearate uses include:  ammunition, dusting powder, paint and varnish drier, binder and emulsifier.
  2. Companies that manufacture and transport magnesium stearate must file a Material Safety Data Sheet with the EPA because concentrated magnesium stearate is classified as a hazardous substance
  3. Under the section titled "Human Health Data" it states that "Inhaling Magnesium Stearate may irritate the respiratory tract" and acute ingestion may cause gastroenteritis.
  4. Under the heading "Regulatory Information" it states that magnesium stearate is hazardous under the criteria of the Federal OSHA Hazard Communication Standard" - you can see this information at the web site:  http://e2ma.net/go/8552189444/3030649/97633539/5054/goto:http:/www.hummelcroton.com/msds/mgstear_m.html" target="_blank" rel="nofollow">www.hummelcroton.com/msds/mgstear_m.html
  5. Supplement manufacturers pass off magnesium stearate as a benign form of magnesium. They try to claim that small amounts of these substances do you no harm.  Really? They ignore the fact that this harmful substance bio-accumulates over time and causes immune suppression. Do you really want to ingest any of this?
  6. Also consider that usually, the magnesium stearate accounts for up to 5% of the supplement tablet or capsule. Multiply that by the number of capsules or tablets you take per day and over time this becomes quite a bit.
Research Citations:
  1. Department of Microbiology and Immunology - East Caroline University School of Medicine, Greenville, North Carolina. The t-helper cells are unable to avoid an over-accumulation of stearic acid in the membranes resulting in T-cell destruction - PMID 2149847 (pubMed - indexed for Medline)
  2. Citation: Tebbey PW, Buttke TM. Molecular basis for the immunosuppressive action of stearic acid (magneium stearate) on T-Cells, Immunology, 1990 July; 70(3):379-386 - concludes - increased abundance of this PC species may enhance membrane rigidity to an extent that plasma membrane integrity is significanlty impaired, leading to the loss of membrane potential and ultimately cell function and viability.
  3. Dr Klinghoffer from Seatle, states that magnesium stearate stimulates the body to produce biofilms.
It is prudent to throw away any nutritional supplement that has toxic tagalongs and especially magnesium stearate in it and avoid buying any of them in the future.

*Special Thanks to Keith Sersland, Naturopath for the information.