What are the characteristics of e-light skin rejuvenation and hair removal?

What are the characteristics of e-light skin rejuvenation and hair removal?

Body hair is a problem that many women are bothered by, especially in the summer, so they will choose hair removal. Hair removal is the use of some method to quickly remove body hair, and many advanced technologies can also achieve permanent hair removal. However, you must choose the most scientific method of hair removal, and never believe in some folk remedies. So, what is the principle of medical e-light rejuvenation and hair removal, and what are the treatment characteristics?

Treatment Principle

The Polaris E-light wrinkle removal system uses e-light technology to provide an ideal temperature rise distribution in the deep dermis, which helps to select target tissues for treatment with high precision. It works on the deep dermis and connective tissue, stimulating collagen regeneration without affecting normal skin, thereby safely removing wrinkles and improving skin quality.

Features

During the treatment process, light energy is mainly used to adjust the impedance value of the target tissue and guide the RF (radio frequency) energy to concentrate on the target tissue. Light energy is not the main treatment energy, thus avoiding the reflection and refraction problems of the main energy. Based on the characteristics of RF (radio frequency), the thermal effect generated by RF (radio frequency) on skin tissue depends on the current density, and the distribution of current density depends on the impedance distribution of skin tissue. The higher the tissue temperature, the lower the impedance, the greater the current density, and the higher the thermal effect generated; conversely, the lower the tissue temperature, the higher the impedance, the smaller the current density, and the lower the thermal effect generated. Therefore, the absorption of RF (radio frequency) energy, which plays a major therapeutic role, by the target tissue is not affected by the epidermal pigment barrier. The RF (radio frequency) energy can fully act on the target tissue to achieve a good therapeutic effect.

The penetration depth of e-light depends on the penetration depth of RF (radio frequency). The penetration depth of RF (radio frequency) is half of the distance between the two poles of RF (radio frequency). Based on this principle, the e-light treatment system has a treatment head that is reasonably designed according to different treatment purposes, so that the penetration depth of E-light fully meets the treatment requirements. The deepest penetration can reach 15mm subcutaneously, further ensuring the effectiveness of the treatment.

The light energy and radio frequency energy in the e-light system can be controlled separately. The operator can choose lower light energy and higher radio frequency energy during the treatment process, thereby minimizing the risk of postoperative epidermal burns. Therefore, after e-light treatment, there will basically be no complications such as facial redness and swelling, let alone purpura. When using e-light for treatment, the operator does not have to worry about epidermal burns caused by high energy or the treatment head being too close to the skin.

The e-light system's unique patented technology - ISL (real-time skin temperature/impedance monitoring system) and powerful cooling system further protect the epidermis and ensure clinical efficacy.

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