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1 Set biofir ( Bio necklace + Bio Bracelet) only U$200
please send email for confirmation of your complete payment and shipping address
In Vivo. 2000 Mar-Apr;14(2):321-6.
Related Articles, Links Effects of far-infrared ray on reproduction, growth, behavior and some physiological parameters in mice.
Udagawa Y, Nagasawa H.
Experimental Animal Research Laboratory, Meiji University, Kanagawa, Japan.
The effects of chronic exposure to far-infrared ray (FIR) on reproduction, growth, behavior, survival time and some related parameters were examined in SHN mice. The reproductive parameters differed slightly between the females on the normal racks and those on the FIR racks, which emitted FIR from the ceiling. The age and body weight on the day of vaginal opening was lower in the experimental mice born and maintained on the FIR rack than in the control on the normal rack. In both sexes, the levels of urinary components in the experimental group was significantly higher than the control at 6-7 months of age. Spontaneous motor activity of females during the light and dark phases were higher and lower, respectively, in the experimental group than the control. The survival rate was significantly higher in the experimental group than the control.
Effect of Fir energy Since FIR are able to hatch the eggs of insects, sea turtles, chickens and other animals, causing them to develop blood vessels, nerves, skeleton, skin and feathers, it may similarly cause changes to the human body. Our bodies are made up of cells, and the most important ingredient in cells is water. Water makes up 65% to 70% of mass of the human body. The cells in the body in turn forms the various tissues and organs such as the heart, liver, kidneys, digestive organs, blood vessels, nerves, bones and skin. Just as FIR are able to cause the albumin and egg yolk to develop into various organs, it is able to activate, revitalise,nreactivate, develop and strengthen the various organs in our bodies when it is absorbed. In the various organs of the human body, the circulatory system plays an important role, especially the micro-circulatory system.
Meffert.H & associatesSystemic effects of ultraviolet, visible and infrared radiation in serial whole body irradiation. I. Oxygen utilisation, flow properties of blood, hemodynamics, blood components and phagocytosis.
Meffert H, Scherf HP, Baumler H, Ziegler-Bohme H, Gulke L, Struy H, Strangfeld D, Siewert H, Sonnichsen N.
31 healthy volunteers at the age of 19-29 years underwent whole-body irradiation by either ultra violet radiation (NARVA UVS 65-2: continous sunshine-like emmision, predominantly UVA plus 8% UVB, cumulative doses after 4 and 20 irradiation 8.8 J/cm2 and 51.0 /J cm2, respectively), or visible light (emission of a 3500 watt lamp HGMI 3500 DL, Tungsram CSSR, filter through 6 mm window glass; cumulative dose 267.0 J/cm2 after 4 irradiation) or infrared radiation (250 watt infrared lamps NARVA “Biotherm”, emmiting more than 70% infrared radiation cumulative dose 159.0 J/cm2 after 4 irradiation ). Before, during and after the irradiation series the following investigation were made: Arterial and venous oxygen pressure oxygen utilisation index: flow properties of peripheral blood (plasma viscocity, erythrocyte aggregation kinetics, apparent blood viscocity); hemodynamics (veineal plethysmography, 133 Xenon clearance, functional diameter of small blood vessels, peripherals blood pressure), phagocytotic capacity of polymorphonucler white blood cells:, hemoglobin, hematocrit), serum proteins (IgG, IgA, IgM, compliment C3, alpha-I-glycoprotein, alpha-I-antitrypsin, haptoglobin, transferrin); calcium and phosphate in serum. As far as irradiance, dose and treatment frequencies are concerned, the experimental conditions were very similar to those in.