MICROSON professional HIFU machine (made in KOREA)
HIFU - High Intensity Focused Ultrasound - means high intensity focused ultrasound.
This is a local SMAS layer procedure using ultrasound.
When using the skin lifting procedure, the SMAS (fascia layer) is immediately contracted by forming a 65~80℃ coagulation point through 4MHz and 7MHz high-intensity focused ultrasound energy. The "Transhole" converter technology is applied, which ensures a stable energy supply. After the exposure, the stretched collagen shrinks, connective tissue is further formed, which ensures facial tightening.
The procedure is performed without damaging the skin of the surrounding healthy tissues and organs.
The maximum effect of the procedure is achieved from 2 to 6 months. The duration of the effect is 1.5-2 years, depending on the individual characteristics of the patient
Technology
A conventional converter
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Cavitation causes a large number of microbubbles to form in the cartridge
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Bubbles on the surface of the converter interfere with the energy supply
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Epidermal damage, side effects and pain are increased
Transhole converter
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Less microbubbles due to the transducer hole
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Stable ultrasonic energy supply
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Less epidermal damage, side effects and pain
Fast processing - wide range
Up to 22 points per line
Optimal effect with adjustable length and distance between points
A convenient procedure
Comfortable and ergonomic design with several buttons
Various cartridges
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1.5mm, 3.0mm, 4.5mm, 13mm
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Intended for various skin layers and procedures
This device is only intended for professional use in beauty salons and offices.
This device is only intended for use by cosmetologists, dermatologists and doctors.
This machine has all the necessary CE certificates.
This device has a detailed user manual in LT, EN and RU languages.
All device documents are sent to the customer together with the product or to the e-mail specified by the customer after purchasing the product.
You can get more detailed information by e-mail: komercija@salonams.eu
Product color may slightly vary due to photographic lighting sources or your monitor settings.