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Experience the High-Tech Laser Health Care Revolution

Revolutionary Laser Care with the Best Available Technology
Erchonia Laser Scanner

Low level laser therapy uses laser light at low levels. The light is applied to the surface skin with the intentions of decreasing pain or inflammation, promoting healing of wounds, tissues, and nerves, or for preventing tissue damage. This is much different than high-level lasers that we know for surgical procedures to cut or destroy unhealthy tissue.

Low level laser therapy works through a photochemical effect (which also occurs with photosynthesis in plants).

When cells inside tissue are stressed via disease and injury, the mitochondria (powerhouse/place where metabolism takes place inside a cell) produces harmful nitric oxide. The nitric oxide displaces needed oxygen from the cell causing inflammation or cell death.

 

When tissues absorb the light from the low-level laser,

the nitric oxide is irreversibly split allowing more oxygen back into the cells and increasing tissue oxygenation.

Via this mechanism, cell metabolism and mitochondria function is restored allowing health of the tissue. The absorption of the light increase cell proliferation and migration (regeneration) and to modulate levels of growth factors and inflammatory mediators.

Erchonia FX635 laser
Erchonia EVRL laser
Erchonia GVL laser
Erchonia FX405 laser
ZERONA_Z6_Fat-Loss-Laser
Expert Low level Laser Care Using Multiple Wavelengths for Optimum Health
laser wavelengths

Wavelength (measured in nano meters) determines color, properties, and energy (measured in electron volts) of the laser light.  Different lasers have different effects on the phases of energy production (electron transport chain in the mitochondria).

 

Violet Laser   405nm | 3.06ev

Mitochondrial Complexes I & II 

  • Antimicrobial (anti-bacterial, anti-viral, anti-parasitic, anti-fungal)

  • Scar tissue breakdown

  • T Reg modulation (immunosuppressive cells to prevent autoimmune disease)

  • Increase nitric oxide (vasodilator = improves blood flow)

  • Skeletal muscle

  • Reduce ROS (free radical byproducts of oxygen metabolism)

  • Wound healing

  • Pain & inflammation 

Green Laser   520nm | 2.33ev

Mitochondrial Complex III 

  • Wound & bone healing (stimulation of stem cells)

  • Peripheral Neuropathy (nerve regeneration/healing)

  • T Helper Regulation (immune modulation via releasing cytokines)

  • Reduction TGF-B (cytokines controlling cell growthproliferationdifferentiation, and cell death

  • Autonomic nervous system toning & balancing

  • Skin disorders

  • Biggest stimulation of stem cells

Red Laser   635nm | 1.95ev

Mitochondrial Complex IV

  • Healthy cell DNA replication

  • Acute injuries and burns

  • Pain & inflammation 

  • Increase mitochondria

  • Production of IL-10 (anti-inflammatory cytokin)

  • Angiogenesis (new blood cells)

Studies reveal how certain conditions and medications affect certain phases of the production of energy.  We create customized protocols using different lasers with different colors (wavelengths and energy) to best support the normal adaptive physiology of the body.

What’s the difference between Lasers vs. LED?

Erchonia 3LT® devices used electric diodes, which are high end, culminated and strictly measured within a plus/minus .05%. LEDs are inexpensive, non-focused wide range light sources.  The primary difference is in performance and depth of penetration.  Laser diodes penetrate, working subcutaneously, LEDs do not, affecting the surface only.  Although there are benefits of the use of LEDs, Low level lasers produce enough energy transfer to make chemical changes in the tissues; LEDs cannot produce enough energy.  The difference between low level laser and LEDs is so significant, Erchonia used LEDs as the placebo in their clinical trials for the FDA.

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