Sienna Hair Removl Principle IPL (Intense Pulsed Light) is a high-intensity, wide-specturm, non-continuous light source, also konwn as intense pulsed light. IPL systems work on the principle that light energy is absorbed into particular target cells with colour (chromophores) in the skin.
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Portable IPL/SHR hair removal SKIN REJUVENATION vascular removal muti-function

The Principle of the Intense Pulse Light Technology:
IPL is a broad range of visible, incoherent, non-laser and filtered light of 560—1200nm wavelength selection. The effects on targeted skin include thermal, mechanical, electromagnetic, photochemistry and physical stimulation effects etc. The work principle of IPL is to utilize its photothermolysis effect to treat skin lesions like pigmentation, Benign vascular disease and hirsutism. The basic principle of selective photothermolysis works through different absorbency of different target cells (including melanin, hemoglobin, collagen and water) in the skin tissues towards different light wavelengths.
In the range of 560—1200nm, the different wavelength light can select different targets to transform photo energy into heat energy burning abnormal pigment cells till its expansion and burst. Then, the part of remains is absorbed locally, the rest of them is swallowed by phagocytes to excrete. The principle of treating vascular lesions is to heat and coagulate the hemoglobin making its endothelial cells swollen, in spasm, lack of nourishment supply, then dead. Gradually the vessel is shrunken and closed. In addition, through "photochemical role" to activate fibroblasts and stimulate type I and III collagens, the collagen layer is grown to achieve the purpose of skin rejuvenation. Taking the advantage of the short pulse width and low energy density of IPL plus cooling function of the treatment handles, the effective treatment result is ensured and without normal tissues impaired.


Application
* Skin Rejuvenation
* Removing epidermal pigmentation
* Painless hair removing
* Removing vascular
* Removing acne


