The fractional CO2 laser operates at 10600nm wavelength, which is selectively absorbed by water in skin tissue. This creates precise thermal effects where intracellular water instantly vaporizes within microseconds, forming microscopic treatment channels while preventing thermal damage to surrounding healthy tissue.
The laser beam splits into hundreds of microthermal zones (MTZs) measuring 100-200μm in diameter, covering only 15%-30% of the skin surface. This patterned treatment preserves intact skin as healing reservoirs, reducing recovery time to typically 3-7 days.
Customizable energy density, pulse duration, and treatment density allow tailored protocols for acne scars, photoaging, and dyschromia, achieving synergistic epidermal remodeling and dermal reconstruction.
It operates at a 10600nm wavelength, which is selectively absorbed by water in skin tissue. This vaporizes intracellular water within microseconds, creating precise microscopic treatment channels while protecting the surrounding tissue from thermal damage.
By splitting the laser beam into microthermal zones (MTZs) that cover only 15%-30% of the skin surface, the system leaves the remaining skin intact. These untreated areas act as healing reservoirs, accelerating recovery to just 3-7 days.
The Ablative Effect instantly vaporizes the epidermal stratum corneum and partial dermis to remove surface flaws, while Thermal Stimulation heats deeper layers to activate fibroblasts and trigger long-term neocollagenesis.
Thermal stimulation triggers a neocollagenesis process that continues for 3-6 months post-treatment, gradually optimizing the type I/III collagen ratio to a healthy 4:1 level.
Energy density, pulse duration, and treatment density can all be adjusted to create targeted protocols for specific skin concerns such as acne scars, photoaging, and dyschromia.
Through customizable energy and pulse parameters, it provides tailored solutions for treating acne scars, photoaging signs, and dyschromia by combining epidermal remodeling with dermal reconstruction.