ALMA TED

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About the ALMA TED

WHY ALMA TED?

Alma TED is a revolutionary, non-invasive treatment. When used with a topical Hair Care Formula, it promotes improved blood flow to the scalp which results in thicker, stronger hair. It offers these benefits without the discomfort and shedding often experienced with other in-office hair treatments and procedures.

WHAT SHOULD I EXPECT?

Alma TED is a quick, 20-25 minute treatment. During your consultation, your practitioner will assess your scalp to personalize the best treatment for you. You'll notice improvements as early as one month following your first treatment, but additional treatments may be recommended for optimal results.

WHAT IS ALMA TED?

Alma TED is an ultrasound-based system that leverages acoustic sound waves to address a wide range of aesthetic applications that would benefit from improved blood flow. Our TED+ Hair Care Formula contains essential ingredients that conjunctively support optimal hair and scalp health and follicular strength. When paired with the TED+ Hair Care Formula, Alma TED helps improve the appearance of hair resulting in thicker, fuller-looking hair with increased shine and strength.

IS THE TREATMENT PAINFUL?

No, the treatment should not be painful. You can expect to feel a warm sensation from the device and a ringing sound through the course of the treatment, but there is no pain involved. No Needles. No Discomfort. No Trauma to the Scalp.

HOW SOON CAN I EXPECT TO SEE RESULTS?

You can expect to see minor results after one treatment, but it is recommended to have at least three treatments, one month apart, for optimal results.

WHO IS A GOOD CANDIDATE FOR ALMA TED?

Alma TED was developed to be used on any individual that is suffering from hair loss or that wants to improve the overall thickness and appearance of their hair. BEFORE 1 MONTH AFTER 3 TXS +44% in hair thickness Speak to your practitioner to discuss the best treatment plan for you.

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*Individual results are not guaranteed and may vary from person to person. Images may contain models.