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Permanent hair removal with a diode-pumped Nd:YAG laser: a pilot study using the direct insertion method

The removal of unwanted hair with various laser systems and related procedures has been investigated for many years. All researchers have met difficulty when trying to achieve “permanent” hair removal. In addition, damage to the epidermis and other complications, including hyper- or hypopigmentation...

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Published in:Journal of the American Academy of Dermatology 2003-12, Vol.49 (6), p.1071-1080
Main Authors: Hashimoto, Ken, Kogure, Motoichiro, Irwin, Timothy L., Tezuka, Keiko, Osawa, Toshimitsu, Kato, Kyoichi, Ebisawa, Teruko
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cited_by cdi_FETCH-LOGICAL-c391t-ce8d715fbca2ebf23530d0e1941c113de9e047651b93f1ae2884561382e340c63
cites cdi_FETCH-LOGICAL-c391t-ce8d715fbca2ebf23530d0e1941c113de9e047651b93f1ae2884561382e340c63
container_end_page 1080
container_issue 6
container_start_page 1071
container_title Journal of the American Academy of Dermatology
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creator Hashimoto, Ken
Kogure, Motoichiro
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Tezuka, Keiko
Osawa, Toshimitsu
Kato, Kyoichi
Ebisawa, Teruko
description The removal of unwanted hair with various laser systems and related procedures has been investigated for many years. All researchers have met difficulty when trying to achieve “permanent” hair removal. In addition, damage to the epidermis and other complications, including hyper- or hypopigmentation in pigmented skin, have occurred because the laser energy was applied indirectly to the hair bulb through the epidermis. To achieve permanent hair removal with the use of a diode-pumped neodymium:yttrium-aluminum-garnet laser system with an insulated optical needle. Also, to establish laser treatment parameters that allow for quick and effective removal of hair with minimal pain and no long-term medical complications. The laser used in the study was capable of producing up to 500 mJ of energy per burst at a 1,064-nm wavelength. A pulse width of 200-500 μs and a burst frequency of 100-200 Hz could be selected, and both defined a subset of the treatment parameter space. An optical needle, typically 130 μm in diameter, was prepared before each new treatment was conducted. Three bursts of energy, 300 mJ each, with a 300-millisecond interval, were delivered through the optical needle into each hair follicle. Between 200 and 300 shin hairs, typically terminal hairs, on each of 5 volunteers were treated. These volunteers were observed over 18.5-30 months for the regrowth of hairs by hair count. At the end of the observation period (6-30 months after the last treatment), 3 of 5 volunteers showed permanent loss of 76%-94.3% of their unwanted hair. One volunteer lost 34.8% of the original hair, but regrown hair was much thinner than the original terminal hair. One volunteer lost only 22.8% of the original hair, and regrown hair was coarse terminal hair. Except for the loss of hair, no change in skin texture, sensation, or skin color was observed. The direct insertion optical method (DIOM), delivering laser energy directly to the hair bulb through an optical needle, has proven to be effective and achieves permanent hair removal in 60% of volunteers without medical complications.
doi_str_mv 10.1016/S0190-9622(03)02130-3
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Three bursts of energy, 300 mJ each, with a 300-millisecond interval, were delivered through the optical needle into each hair follicle. Between 200 and 300 shin hairs, typically terminal hairs, on each of 5 volunteers were treated. These volunteers were observed over 18.5-30 months for the regrowth of hairs by hair count. At the end of the observation period (6-30 months after the last treatment), 3 of 5 volunteers showed permanent loss of 76%-94.3% of their unwanted hair. One volunteer lost 34.8% of the original hair, but regrown hair was much thinner than the original terminal hair. One volunteer lost only 22.8% of the original hair, and regrown hair was coarse terminal hair. Except for the loss of hair, no change in skin texture, sensation, or skin color was observed. 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subjects Adult
Biological and medical sciences
Dermatology
Hair - radiation effects
Hair Removal - methods
Humans
Laser Therapy
Male
Medical sciences
Middle Aged
Pilot Projects
title Permanent hair removal with a diode-pumped Nd:YAG laser: a pilot study using the direct insertion method
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