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PicoElim Tattoo Removal Laser Spot Master

PicoElim Tattoo Removal Laser Spot Master

Regular price $12,656.00 AUD
Regular price $16,273.00 AUD Sale price $12,656.00 AUD
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The PicoElim Tattoo Removal Laser Spot Master is a desktop laser that emits a 2000ps pulse duration at the picosecond level, utilizing advanced technology for the treatment of pigmented diseases.

Using high-speed and intense energy, this innovative picosecond laser breaks down skin pigment more effectively than nanosecond lasers.  Furthermore the principles of lymphatic drainage are used for complete removal of tattoos and pigmentation.  Treatment time is reduced from 10 sessions to only 2-3, while also minimizing the risk of damage to the dermis and potential side effects, resulting in a higher success rate for the procedure.

The laser effectively removes:

  • A variety of tattoos, including eyeliner and lipliner.
  • Pigment found in the epidermal and dermal layers of skin.
  • Ota's nevus-like spots.
  • Skin imperfections such as freckles, age spots, sun spots, simple spots, and coffee spots.

Adjustable Spot Size:

This laser features an active Q Switched ND yag laser with independently adjustable spot size. This sets it apart from an inactive Q Switched ND yag laser. Not only does it have a higher power output, but it also has a shorter pulse width for more efficient tattoo removal. Experience a better and more convenient removal process with faster results. See the specifications below

About Picosecond Laser Technology:

A picosecond laser is a highly advanced laser, which emits pulses, each with a duration of just picoseconds.

Following the principle of selective photothermolysis, shorter laser action times result in less energy being absorbed and spreading to surrounding tissue. This allows for a more targeted treatment of the intended area, minimizing potential damage to surrounding normal tissue.

The picosecond laser has a pulse width that is just 1% of the traditional Q-switched laser, resulting in minimal heat conversion and a reduced photothermal effect. This allows for more thorough breakdown of pigment particles and stronger selectivity, leading to improved treatment outcomes for pigmented skin lesions in shorter time frames.

By likening original pigment particles to rocks, the traditional Q-switched laser can break them down into pebbles, while the picosecond laser can reduce them to fine sand, significantly enhancing the absorption efficiency of pigment fragments.

 

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