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 dynamic cooling system to ensure epidermal integrity while protecting surrounding tissues.
Reducing peripheral tissue thermal damage by 40% while targeting deep dermal layers directly.
The 1064nm laser wavelength specifically targets and is absorbed by melanin and dark ink particles. It creates a rapid thermal expansion using nanosecond pulses, which shatters the pigment particles without damaging the surrounding skin.
Pigment removal cannot be completed all at once. The first session breaks down the largest pigment particles. Subsequent treatments are required to break the remaining micro-particles down further so they can be naturally eliminated by the body's metabolic system.
The device features integrated safety protection, including an active dynamic cooling system. This system cools the outer layer of the skin (epidermis) during the procedure to preserve its integrity and prevent burns.
By utilizing precise targeting and advanced cooling systems, this laser technology reduces thermal damage to peripheral (surrounding) tissues by up to 40% compared to traditional laser systems.
Yes, the 1064nm wavelength is specifically designed to penetrate deeply into the dermal layers of the skin, making it highly effective for deep-seated pigments and professional tattoo inks.