THE SCALAR SYMPHONY SYSTEM
Improve cellular performance and help your body bend the rules of ageing.
ScalarSymphony is reviving pulsed electromagnetic field (PEMF) technology — researched by NASA and used in various FDA-approved medical applications — with a new focus: reducing the visible signs of ageing, starting with facial wrinkles and fine lines. We’re introducing a new generation of natural, non-invasive, non-contact anti-ageing treatments designed to support cellular health and accelerate the body’s own collagen production.
The effectiveness of ScalarSymphony devices depends on a few key variables. Like a symphony — which needs the right melody, rhythm, and tempo — our devices emit electromagnetic waves in a specific sequence, at a specific frequency, and at a specific tempo. A symphony can’t be whistled; it takes an orchestra to perform it properly. In the same way, harmonising communication between and within cells is essential to optimal health.
Our technology rests on two established principles of physics. The first is Faraday’s law of electromagnetic induction: a changing magnetic field induces an electric charge, and every cell in the body functions like a battery, requiring a measurable electrical charge to work properly. Our technology supports cellular regeneration by delivering that charge through potential and kinetic energy. The second is resonance — what happens when an external vibration causes another system to vibrate more strongly at its own natural frequency. Resonance is what allows our devices to trigger specific cellular responses — in this case, tuned to stimulate the body’s natural collagen production, though the same principle can be applied to other frequencies for different purposes. Together, these two principles are designed to stimulate blood flow and support optimal cell performance — painlessly, non-invasively, and without chemicals.
Scalar Symphony Technologies stimulate blood flow for optimal cell performance.
That improved cellular environment is where the visible signs of ageing start to reverse course. As we age, expression of collagen-related genes (Col1a1/Col3a1) naturally decreases, while cellular inflammation increases. In a laboratory study, a single pulsed electromagnetic field was shown to up-regulate tenogenic gene expression (Col1a1, Col3a1, Scx, Dcn) and down-regulate inflammatory gene expression in tendon cells.⁴ Using tools like ultrasonic imaging, collagen production and blood circulation can be measured — meaning progress can be tracked, not just assumed.
We’re taking that same data-driven approach further with telomere testing, using telomere length as a marker of biological age to help measure our technology’s real-world impact over time. This research is ongoing, and we’re excited to explore what frequency-based approaches might one day contribute to the study of cellular ageing.
⁴Lin, C.C., Wu, P.T., Chang, C.W., et al. (2020). A single-pulsed electromagnetic field enhances collagen synthesis in tendon cells. Medical Engineering & Physics, 77, 130–136.