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With this system you lie on top of a full body red-light mat and have one mat on top of the body to treat the body from above and below - an unparalleled red-light therapy experience. The initial session is 15-minutes, however longer sessions can also be scheduled.
Improve cellular function, athletic performance, skin health and appearance plus fight chronic pain and inflammation all without having to pay thousands for red light bed that requires a huge amount of space in your home!
Many feel an energized effect after just one single session. The Near infrared provides a gentle warming, creating a relaxing restoring experience.
Photobiomodulation therapy is defined as the utilization of non-ionizing electromagnetic energy to trigger photochemical changes within cellular structures that are receptive to photons.
Mitochondria is particularly receptive to red and near-infrared (NIR) photons. At the cellular level, visible red and near infrared light energy are absorbed by mitochondria, which perform the function of producing cellular energy called “ATP”.
The key to this entire process is a mitochondrial enzyme called cytochrome oxidase c, a chromophore, which accepts photonic energy of specific wavelengths when functioning below par.
What are the Mechanisms of Photobiomodulation?
There are three bioenergetics pathways in photobiomodulation.
Firstly, low level visible red to near infrared light (NIR) energy is absorbed by mitochondria and converted into ATP for cellular use.
Secondly, the process creates mild oxidants (ROS), which leads to gene transcription and then to cellular repair and healing.
Lastly, the process also unclogs the chain that has been clogged by nitric oxide (NO).[1] The nitric oxide is then released back into the system. Nitric oxide is a molecule that our body produces to help its 50 trillion cells communicate with each other. This communication happens by transmission of signals throughout the entire body. Additionally, nitric oxide helps to dilate the blood vessels and improve blood circulation.
Photobiology is the study of the effects of non-ionizing radiation on biological systems. The biological effect varies with the wavelength region of the radiation. The radiation is absorbed by molecules in skin such as DNA, protein or certain drugs. The molecules are changed chemically into products that initiate biochemical responses in the cells.
Biological reaction to light is nothing new, there are numerous examples of light induced photochemical reactions in biological systems. Vitamin D synthesis in our skin is an example of a photochemical reaction. The power density of sunlight is only 105 mW/cm2 yet when ultraviolet B (UVB) rays strikes our skin, it converts a universally present form of cholesterol, 7-dehydrocholesterol to vitamin D3. We normally experience this through our eyes which are obviously photosensitive. Our vision is based upon light hitting our retinas and creating a chemical reaction that allows us to see. Throughout the course of evolution, photons have played a vital role in photo-chemically energizing certain cells.
Research and clinical studies show that when NIR light energy has sufficient power density, it is capable of penetrating biological tissue and bone to produce therapeutic outcomes without negative side effects.
Near infrared light (NIR) energy is part of the electromagnetic spectrum – which are waves (or photons) of the electromagnetic field.It radiates through space and carries electromagnetic radiant energy. Several existing technologies depend on the ability of electromagnetic energy to penetrate solid objects, such as WiFi, mobile data, radar and navigation satellites.
Figure 1 The electromagnetic spectrum
The depth or the power of penetration by light energy depends on the wavelength in the electromagnetic spectrum. Thus, the longer the wavelength, the greater the ability for photons to penetrate an object. NIR light energy is found around the center of the electromagnetic spectrum.