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Laser Tattoo Removal is a Safe, Easy, and Effective Process

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How laser tattoo removal works is a mystery to many. But, it’s not magic It’s science! Laser removal of tattoos is a thrilling procedure for both patients and those who practice it, but very most people don’t understand the science behind the procedure. This section of our website will provide an overview of the science behind laser tattoo removal. It also explains why laser tattoo removal is the most effective method for getting rid of unneeded ink.

The Laser Tattoo Removal Basic Process

During a laser tattoo removal near me procedure, the technician directs a laser across areas of tattoo. Contrary to lasers that produces a continuous stream of light, lasers for tattoo removal create light-induced pulses.

Each energy pulse goes through the skin and is absorb by the ink that is used for tattoos. As the tattoo ink particles absorb the energy, they heat up and then split into tiny pieces. Then, over the months following treatment, the body’s immune system flushes the tattoo ink particles away from the area, reducing the appearance of the tattoo. Each treatment with laser breaks down each time, removing more and more tattoo ink until none remains.

Why is it called Q-Switching?

Q-switching can be described as a specific type of laser pulse production. Q-switched lasers create extremely strong, short pulses of energy , usually lasting just a few nanoseconds. The rapid, intense flash of energy is a big part of answering the question of how laser removal of tattoos operates.

Q-switched lasers are especially useful for removal of tattoos by laser. The particles of tattoo ink are very small (typically nanometers wide) They require to be heated for a short amount of time to warm up and explode.

The skin cells are much bigger and will need being heated over a long time of time before being damaged. Because a Q-switched laser’s pulse is so brief, it is capable of heating and breaking tattoo ink without heating nearby skin tissues. In essence, the briefness of the laser pulse that is Q-switched allows practitioners to selectively damage the tattoo ink particles while remaining the surrounding skin unharmed.

The focus is on the Tattoo Ink

Tattoos come in every color imaginable. Just like other things around us different shades of tattoos absorb and reflect various wavelengths of light in different speeds. For instance the red color of a tattoo appears red due to its absorption of green light while reflecting red light.

Because the goal of laser removal of tattoos is to make the tattoo ink absorb the laser light, you need to make sure that the wavelength that you select is well-absorbed by the tattoo. Referring to that red-colored tattoo red ink must be treated with green laser light since it absorbs the light green (which causes the particles of ink to melt and break). Because the wavelength 532 nm of laser light appears green, it’s the most appropriate wavelength to treat a red tattoo.

When dealing with multicolored tattoos, it is vital to be able to access a range of laser wavelengths for treatment adaptability. The most commonly used wavelengths to remove tattoos using lasers are 1064 nm and 530 nm that can treat 95percent or more of tattoos. Additional wavelengths that some practitioners employ are 755 nm and 694 nm. Both wavelengths work in a similar way and are great for treating unusual ink colors such as bright blue or green.

The Body Lets Itself Do Its Work

Removal of tattoos isn’t an instant fix – it’s typically a commitment of several months for patients. Most tattoos require between five and 10 treatments to achieve complete removal, and the treatments must be performed at least 6 weeks apart. Patients often ask why removal takes so many treatments and why they need to be patient between treatments. As a professional it’s essential to be aware of the answers to these questions to provide an informative patient consultation.

Laser tattoo removal is a process that requires several procedures because not all the tattoo ink is able to be broken in one treatment session. When the tattoo is placed and the ink is injected at different depths within the dermis. When the light from the laser hits the skin, the shallowest layers of ink in the dermis absorb the light and break, while the more dense layers might not have been affected. After the body flushes off the top layer of ink can the deeper layers being treated. Each successive removal procedure affects the deeper and deeper layers of ink until no ink remains.

Patients should have a wait between treatments as taking time allows the body’s system to flush the shattered tattoo ink from the area of the tattoo. In the process of flushing away the ink involves immune system phagocytic cells , which gradually move the pigments to the lymph nodes in the body, where pigments remain. Since the body can only flush away the ink at a certain speed It is recommended to rest as long as possible between treatments to see maximum reduction in the amount of ink that is absorbed after each treatment. In addition, the time between treatments permits any blisters or scabs to heal, minimizing the possibility of over-treating the area and causing unwanted adverse consequences.

A Quick Discussion of the Alternatives

Laser removal of tattoos is the most viable, non-invasive option to eliminate unwanted ink. In the past, people who were unhappy with their tattoos had limited options. They could undergo costly removal procedure (which creates a visible mark) or opt for a destructive CO2 laser (which also leaves a massive scar) or just have to accept the tattoo.

Today, there is numerous tattoo removal creams or injections available on the market, but these must be kept out of. These creams are not effective at all as they are merely modified bleaching creams which are not able to penetrate the dermis, which is where the tattoo ink found. Injection methods are also highly suspect and often cause significant scarring.

Tattoos are popular, regret about tattoos are high and laser tattoo removal is the only true alternative to unattractive tattoos.