Light Therapy Colors: Magenta Light Therapy

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==> For more information about the colors of the Visum Light, please refer to our Use of Colors page.

What is Polychromatic Light Therapy?

Polychromatic Light Therapy (PLT) is a cutting-edge treatment that utilizes multiple wavelengths of light simultaneously to promote healing and well-being. The Visum Light, an innovative device at the forefront of PLT, combines red, blue, and green light to create additional colors such as magenta (red + blue), yellow (red + green), and cyan (green + blue). These additive colors not only provide the combined benefits of each wavelength but also introduce unique properties that enhance healing. The Visum Light can also incorporate near-infrared (NIR) light for deeper tissue penetration and additional therapeutic advantages.

Exploring the Potential of PLT

PLT is a rapidly developing field, with ongoing research exploring the most effective combinations of colors, dosages, and applications. Though the science behind PLT is still evolving, early studies have shown great potential, indicating that this therapy could offer new, non-invasive options for healing a wide range of conditions.

The Theory Behind Color Healing and Magenta Light Therapy

Color Healing Theory has long suggested that specific colors can influence physical and emotional health. Inspired by early pioneers such as Roland T. Hunt, who explored the healing properties of colors in his book Seven Keys to Color Healing, PLT merges ancient metaphysical insights with contemporary scientific findings. The Visum Light was designed to integrate these principles, using color to promote holistic health and well-being.

Magenta Light Therapy: Combining Red and Blue for Enhanced Healing

Magenta light, a combination of red and blue wavelengths, merges the unique healing properties of both colors. According to Color Healing Theory, blue light is associated with the Laryngeal Chakra, promoting mental clarity, calmness, and serenity. It has antiseptic properties and is used to treat conditions such as Seasonal Affective Disorder (SAD), psoriasis, and other skin disorders. On the other hand, red light is linked to the Root Chakra and is known for its ability to boost vitality and accelerate healing, especially for burns, wounds, and injuries.

The Science of Magenta Light Therapy

Magenta light therapy offers the combined benefits of both red and blue light, making it particularly effective for a wide range of health conditions. Red light, along with NIR, is commonly used to treat musculoskeletal issues, chronic pain, and wound healing. It also stimulates cellular repair and regeneration, helping with tissue repair. Blue light, known for its antibacterial and antifungal properties, is beneficial for treating SAD, neonatal jaundice, and circadian rhythm disorders.

Applications of Magenta Light Therapy 

Magenta light therapy has shown promise in addressing various health conditions and enhancing recovery. Some notable applications include:

  • Prevention of surgical infections (Qiu et al., 2019)
  • Formation of new blood vessels (angiogenesis) (Hamushan et al., 2021)
  • Post-exercise muscle recovery (Rigby & Hagan, 2020)
  • Acne treatment (Kwon et al., 2013)
  • Burn healing (de Oliveira et al., 2018)
  • Chronic wound healing (Jere et al., 2021)
  • Scar prevention (Kurtti et al., 2021)
  • Treatment of trigger points in muscles (Simunovic, 1996)
  • Fighting infections (Yin et al., 2013)
  • Antimicrobial effects (Zhu et al., 2017)
  • Psoriasis management (Lesiak et al., 2021)
  • Relief from dermatitis (Becker et al., 2011)
  • Enhanced wound healing (Adamskaya et al., 2011)
  • Alleviation of Seasonal Affective Disorder (SAD) (Strong et al., 2009)

Magenta light therapy also supports the healthy functioning of key organs, including the heart, kidneys, and adrenal glands. Blue light has been shown to reduce organ damage caused by conditions like sepsis and ischemia, while red light’s anti-inflammatory effects are beneficial for managing inflammatory conditions such as ulcerative colitis.

Emotional and Psychological Benefits

In addition to its physical benefits, magenta light therapy can also have a positive impact on emotional health. The combined effects of red and blue light have been shown to improve emotional balance, potentially lowering blood pressure and enhancing circulation. Additionally, transcranial photobiomodulation (tPBM) using red and blue light has demonstrated potential for treating brain-related conditions such as traumatic brain injury, Alzheimer’s disease, and mood disorders.

Discover the Visum Light: The Future of Healing with PLT

Polychromatic Light Therapy represents an exciting frontier in the world of healing and wellness. Stay updated on the latest research and breakthroughs by subscribing to our newsletter. Ready to experience the benefits for yourself? The Visum Light offers a versatile and risk-free way to explore PLT’s potential. Financing options are available, making it easier than ever to integrate this innovative therapy into your daily routine.

For those interested in further reading, we recommend the comprehensive database compiled by Vladimir Heiskanen of Helsinki, Finland, which provides an extensive collection of studies and research on light therapy.

Don’t miss out on the chance to improve your health and well-being with the Visum Light—an advanced tool in the realm of Polychromatic Light Therapy.

Wow I had no idea! I now I see how I can use the Visum Light even more and would like to get one.

References

Adamskaya, N., Dungel, P., Mittermayr, R., Hartinger, J., Feichtinger, G., Wassermann, K., Redl, H.,& van Griensven, M. (2011). Light therapy by blue LED improves wound healing in an excision model in rats.Injury,42(9), 917–921.https://doi.org/10.1016/j.injury.2010.03.023

Becker, D., Langer, E., Seemann, M., Seemann, G., Fell, I., Saloga, J., Grabbe,S., & von Stebut, E. (2011). Clinical efficacy of blue light full body irradiation as treatment option for severe atopic dermatitis. PloS One,6(6), e20566.https://doi.org/10.1371/journal.pone.0020566

de Oliveira, R. A., Boson, L. L. B., Portela, S. M. M., Filho, A. L. M. M., & de Oliveira Santiago, D. (2018). Low-intensity LED therapy (658 nm) on burn healing: a series of cases. Lasers in Medical Science,33(4), 729–735.https://doi.org/10.1007/s10103-017-2399-z

de Paula-Silva, M., Broering, M. F., Scharf, P., da Rocha, G. H. O., Farsky, S., & Lino-Dos-Santos-Franco, A. (2020). Red light-emitting diode treatment improves tissue recovery in DSS-induced colitis in mice. Journal of Photochemistry and Photobiology. B,Biology,212, 112018.https://doi.org/10.1016/j.jphotobiol.2020.112018

Elman, M., & Lebzelter, J. (2004). Light therapy in the treatment of acne vulgaris. Dermatologic Surgery: Official Publication for American Society for Dermatologic Surgery [et Al.],30(2 Pt 1), 139–146.https://doi.org/10.1111/j.1524-4725.2004.30053.x

Hamushan, M., Cai, W., Lou, T., Cheng, P., Zhang, Y., Tan, M., Chai, Y., Zhang, F., Lineaweaver, W. C., Han, P., & Ju, J. (2021). Postconditioning With Red-Blue Light Therapy Improves Survival of Random Skin Flaps in a Rat Model. Annals of PlasticSurgery,86(5), 582–587.https://doi.org/10.1097/SAP.0000000000002501

Jere, S. W., Houreld, N. N., & Abrahamse, H. (2021). Effect of photobiomodulation on cellular migration and survival in diabetic and hypoxic diabetic wounded fibroblast cells. Lasers in Medical Science,36(2), 365–374.https://doi.org/10.1007/s10103-020-03041-y

Kurtti, A., Nguyen, J. K., Weedon, J., Mamalis, A., Lai, Y., Masub, N., Geisler, A., Siegel, D.M., & Jagdeo, J. R. (2021). Light emitting diode-red light for reduction of post-surgical scarring: Results from a dose-ranging, split-face, randomized controlled trial. Journal ofBiophotonics,14(7), e202100073.https://doi.org/10.1002/jbio.202100073

Kwon, H. H., Lee, J. B., Yoon, J. Y., Park, S. Y., Ryu, H. H., Park, B. M., Kim, Y. J., & Suh, D.H. (2013). The clinical and histological effect of home-use, combination blue-red LED phototherapy for mild-to-moderate acne vulgaris in Korean patients: a double-blind, randomized controlled trial. The British Journal of Dermatology,168(5), 1088–1094.https://doi.org/10.1111/bjd.12186

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