Purpose of Light Therapy
Technology

Designed with 14,400 high intensity red, blue, and infrared LED’s placed closely to the skin for maximum contact. Certain wavelengths of light in the red and infrared spectrum can provide relief from many nerve, muscle and joint conditions, as well as many benefits to skin cells and other body tissues.


Whole Body Light Stimulation Facts

Red light therapy and infrared light therapy is now used by professional athletes to promote healing with dramatic results. It has also been shown to decrease injury healing time, arthritic pains, neck pain, backaches, and sinus pain. It also detoxifies the body and improves metabolic rate. It is also being used in cosmetic and anti-aging treatments.

Many of our clients report that their skin looks and feels much healthier after treatment as well.


Increased Immunity

Red light-activated ATP stimulates white blood cells that work to repair damaged tissues, and increases collagen production that builds elasticity in the skin and can aid in wound healing. ATP also activates endorphins that provide soothing relief from chronic and acute pain.

Adenosine triphosphate (ATP) is a complex organic chemical that provides energy to drive many processes in living cells, e.g. muscle contraction, nerve impulse propagation, chemical synthesis. Found in all forms of life, ATP is often referred to as the “molecular unit of currency” of intracellular energy transfer.


How It Works

The LED Light Bed triggers the body’s own defenses, and actually treats the source of pain rather than mask the symptoms. RED light therapy provides relief from pain and discomfort without negative side effects. Red LED therapy has the ability to stimulate the production of ATP, an important source of energy in body tissues. This allows ATP to promote rapid action by utilizing the body’s own defenses. ATP activates endorphins that provide soothing relief from chronic and acute pain. Infrared light has the potential to trigger the production of endorphins, which are neurotransmitters that can reduce pain in the body.

Red LEDs: 660 nm +/-5 nm. 7.248 Joules/cm2< (120.8 Mw/cm2)
Blue LEDs: 470 nm +/- 5 nm. 11.394 Joules/cm2 (189.9 Mw/cm2)

Effect of Transcranial Low-Level Light Therapy vs Sham Therapy Among Patients With Moderate Traumatic Brain Injury

Findings: In this randomized clinical trial including 68 patients with moderate traumatic brain injury who were randomized to receive LLLT or sham therapy, 28 patients completed at least 1 LLLT session without any reported adverse events. In the late subacute stage, there were statistically significant differences in the magnetic resonance imaging–derived diffusion parameters of the white matter tracts between the sham- and light-treated groups, demonstrating neuroreactivity of LLLT.

Meaning: The results of this clinical trial show that transcranial LLLT is feasible, safe, and affects the brain in a measurable manner.
JAMA Network Open. 2020;3(9)

Click to Read the Study
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