The 1064nm wavelength is preferentially absorbed by melanin and ink particles, creating thermal expansion effects through nanosecond pulses that fragment pigment particles.
Laser energy breaks down pigments in stages:
Equipped with a dynamic cooling system to ensure epidermal integrity while protecting surrounding tissue during treatment.
Targeting deeper pigment layers effectively while reducing peripheral tissue thermal damage by up to 40%.
The 1064nm wavelength is selectively absorbed by dark pigments (melanin and tattoo ink). The laser delivers energy in nanosecond pulses, causing the particles to expand rapidly and shatter without harming the surrounding skin tissue.
Pigment removal is a progressive process. The initial treatment shatters larger pigment clusters into smaller pieces. Subsequent sessions target these micro-particles, breaking them down further so the body's natural metabolic processes can eliminate them.
The system features an integrated dynamic cooling mechanism. This technology cools the outer layer of the skin (epidermis) continuously during the procedure, maintaining skin integrity and ensuring a comfortable patient experience.
Yes, the 1064nm laser is designed to reach dermal treatment depths. By precisely targeting deep-seated pigments, it reduces thermal damage to the surrounding peripheral tissue by up to 40% compared to conventional lasers.
After the laser fragments the pigment particles, your body's immune system gradually clears the micro-particles over several weeks. You will notice a progressive fading of the treated area between sessions.
By delivering targeted energy pulses directly to dermal depths alongside dynamic cooling protection, peripheral tissue thermal damage is reduced by up to 40%.