Understanding How Phoenix Laser Hair Removal Works

Phoenix Laser Hair Removal has assisted many folks who have been having problems with the appropriate method for getting rid of their hair. Many have tried some of the popular methods available, but the results were not as convincing. For those that are thinking of using the laser hair removal techniques, you will need to have some basic understanding of what it’s all about and how it works. This will assist you against any stress from the beginning or during the procedure.

This hair removal technique that is increasingly popular in Boston and other cities, has been around for over two decades, though its popularity has been for just a couple of years back.  It’s not only safe, but also effective and more durable than other hair removal methods such as using wax, electrolysis and tweezing. Though, laser hair removal technique doesn’t function for persons with fine hair, including grey and blonde, and those with dark hair and dark skin must use a special kind of laser for good results.

What is Laser all about?

The laser that’s used in hair removal process, has a specific light beam that’s targeted to the skins melanin, the hair and the follicles.  Melanin is the one that’s concerned with hair and skin color.  The laser beam penetrates into the skin, where it’s absorbed by the melanin present in the follicle of the hair.  This is why those whose skin is fair and hair dark succeed. Should there be a similarity in color between the skin and the hair, then the laser beam is not able to differentiate, therefore, a certain long wave laser may be made use of in such circumstances. The Follicle is destroyed by the laser and no hair grows then the skin starts closing up creating a smooth surface over it.

The need for more than one laser treatment

Though the laser is thorough, it only functions on the hair that is growing actively. Some hair in your body may not be actively growing, the laser may not remove the hair so it calls for a second laser treatment when the hair is actively growing.

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