SCIENCE

The Science Of Photobiomodulation

AXIS CORE™ is built around advanced red and near-infrared photobiomodulation technology engineered to support recovery, resilience and human performance.

Photobiomodulation refers to the interaction between specific wavelengths of light and biological tissue at the cellular level.

Modern research has explored how red and near-infrared light may support natural biological processes associated with recovery, circulation and cellular energy production.


Cellular Energy Production

Within human cells are structures known as mitochondria — often referred to as the “powerhouses” of the cell.

Mitochondria play a critical role in producing ATP (adenosine triphosphate), the primary source of cellular energy used throughout the body.

Specific red and near-infrared wavelengths are believed to interact with chromophores inside the mitochondria, helping support cellular energy production processes associated with ATP synthesis.

AXIS CORE™ is engineered around these principles of cellular optimization and recovery-focused light delivery.


Red & Near-Infrared Wavelengths

AXIS CORE™ utilizes a premium multi-wavelength configuration including:

  • 630nm
  • 660nm
  • 810nm
  • 830nm
  • 850nm

Each wavelength range interacts differently with biological tissue and depth penetration characteristics.

The combination of red and near-infrared wavelengths allows AXIS CORE™ to support a broad range of recovery and performance-focused applications.


Light Penetration & Tissue Interaction

Red and near-infrared light are capable of penetrating beneath the surface of the skin and interacting with tissue at varying depths depending on wavelength.

Near-infrared wavelengths are often associated with deeper tissue penetration, while red light wavelengths are more commonly associated with surface-level interaction.

AXIS CORE™ is engineered to balance both wavelength ranges within one integrated high-output platform.


Irradiance & Light Delivery

Irradiance refers to the intensity of light energy delivered to the body and is commonly measured in mW/cm².

AXIS CORE™ is designed for high-output irradiance performance to support efficient light delivery and optimized recovery sessions.

Peak Irradiance:

182 mW/cm² @ 15 cm

Maintaining consistent output and thermal stability is a key part of the AXIS CORE™ engineering philosophy.


Recovery & Performance

Modern photobiomodulation research has explored applications related to:

  • recovery optimization
  • circulation
  • physical resilience
  • exercise recovery
  • wellness-focused routines
  • human performance environments

AXIS CORE™ was developed to support these modern recovery-focused lifestyles through premium engineering and high-output photobiomodulation technology.


Advanced Thermal Engineering

Stable operating temperatures are essential for maintaining high-performance light delivery.

AXIS CORE™ features:

  • active multi-fan cooling
  • optimized airflow pathways
  • precision thermal management
  • advanced heat dissipation architecture

This allows the system to maintain stable performance during extended operation.


Optimized Low-EMF Architecture

AXIS CORE™ incorporates an optimized electrical architecture engineered to reduce unnecessary EMF exposure during operation while maintaining high-output performance.

The system is designed around:

  • operational efficiency
  • thermal stability
  • optimized power delivery
  • premium recovery integration

Built Around Modern Recovery Science

AXIS CORE™ was developed at the intersection of:

  • photobiomodulation research
  • recovery-focused wellness
  • performance optimization
  • industrial engineering
  • premium design

The result is a premium recovery platform engineered for modern human performance environments.


Scientific Disclaimer

AXIS CORE™ is designed for wellness, recovery and performance-focused applications only.

Lynoryx products are not intended to diagnose, treat, cure or prevent any disease or medical condition.

Always consult a qualified healthcare professional regarding medical concerns.