In the evolving field of aesthetic medicine, Fotona’s HoneyComb™ Lift is setting a new standard for non-invasive face and neck laser tightening. With its unique features, this cutting-edge protocol enhances skin laxity, improves overall skin quality, and ensures a comfortable, effective treatment.

The Science Behind HoneyComb™ Lift

The HoneyComb™ Lift protocol combines the innovative Fotona SMOOTH® technology with the T-Runner® scanner and proprietary HC6 HoneyComb™ optics to optimize treatment precision and efficacy. Inspired by nature’s honeycomb structure, it delivers ultra-short, intense heat shocks for superior skin regeneration.

The hexagonal pattern, a key feature of HoneyComb™ Lift, allows for 72% faster heat dissipation, reducing thermal buildup while ensuring deep-tissue heating. This results in enhanced skin tightening and an improved appearance without invasive procedures.

 

 

Why Choose HoneyComb™ Lift?

  • Enhanced Comfort: The optimized hexagonal pattern ensures uniform energy distribution, ensuring greater patient comfort.
  • Accelerated Healing & Efficacy: Clinical studies show a 2.5x boost in heat-shock biomodulation, stimulating skin rejuvenation.
  • Precise & Fast Treatment: The HC6 HoneyComb™ optics work seamlessly with the T-Runner® scanner, achieving optimal penetration depth safely.

Available with Fotona’s Dynamis lasers, HoneyComb™ Lift is redefining non-invasive skin tightening, offering practitioners a revolutionary tool for superior results with minimal downtime. For best results, patients should undergo three sessions at four-week intervals. The protocol also integrates well with other facial treatments.

Redefining Aesthetic Excellence

Fotona’s HoneyComb™ Lift is more than an innovation — it’s redefining skin rejuvenation. Combining cutting-edge science, advanced technology, and a focus on patient care, Fotona is setting new standards in non-invasive aesthetics, delivering naturally youthful, radiant results.

 

FURTHER INFORMATION

Fotona
www.fotona.com
www.laserandhealth.com