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Low-level light therapy (LLLT) for cosmetics and dermatology

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Low-level light therapy (LLLT) for cosmetics and dermatology ( low-level-light-therapy-lllt-cosmetics-and-dermatology )

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References [1] Chung, H., et al., "The nuts and bolts of low-level laser (light) therapy," Ann Biomed Eng. 40, 516-533 (2012) [2] Gupta, A., et al., "Shining light on nanotechnology to help repair and regeneration," Biotechnol Adv. (2012) [3] Seaton, E. D., et al., "Investigation of the mechanism of action of nonablative pulsed-dye laser therapy in photorejuvenation and inflammatory acne vulgaris," Br J Dermatol. 155, 748-755 (2006) [4] Avci, P., et al., "Low-level laser (light) therapy (LLLT) in skin: stimulating, healing, restoring," Semin Cutan Med Surg. 32, 41-52 (2013) [5] Abergel, R. P., et al., "Biostimulation of wound healing by lasers: experimental approaches in animal models and in fibroblast cultures," J Dermatol Surg Oncol. 13, 127-133 (1987) [6] Yu, H. S., et al., "Low-energy helium-neon laser irradiation stimulates interleukin-1 alpha and interleukin-8 release from cultured human keratinocytes," J Invest Dermatol. 107, 593-596 (1996) [7] Lee, S. Y., et al., "A prospective, randomized, placebo-controlled, double-blinded, and split-face clinical study on LED phototherapy for skin rejuvenation: clinical, profilometric, histologic, ultrastructural, and biochemical evaluations and comparison of three different treatment settings," J Photochem Photobiol B. 88, 51-67 (2007) [8] Weiss, R. A., et al., "Clinical experience with light-emitting diode (LED) photomodulation," Dermatol Surg. 31, 1199-1205 (2005) [9] Kucuk, B. B., et al., "The anti-inflammatory effect of low-level laser therapy on experimentally induced inflammation of rabbit temporomandibular joint retrodiscal tissues," J Orofac Pain. 24, 293-297 (2010) [10] Barolet, D., et al., "Regulation of skin collagen metabolism in vitro using a pulsed 660 nm LED light source: clinical correlation with a single-blinded study," J Invest Dermatol. 129, 2751-2759 (2009) [11] Weiss, R. A., et al., "Clinical trial of a novel non-thermal LED array for reversal of photoaging: clinical, histologic, and surface profilometric results," Lasers Surg Med. 36, 85-91 (2005) [12] Geronemus, R. G., Weiss R.A., Weiss M.A., et al., "Non-ablative LED photomodulation light activated fibroblast stimulation clinical trial," Lasers Surg Med. 25, 22 (2003) [13] McDaniel, D. H., Newman J., Geronemus R. et al., "Non-ablative non- thermal LED photomodulation—a multicenter clinical photoaging trial.," Lasers Surg Med. 15, 22 (2003) [14] Weiss, R. A., McDaniel D.H., Geronemus R., et al., "Non-ablative, non- thermal light emitting diode (LED) phototherapy of photoaged skin," Laser Surg Med. 16, 31 (2004) [15] Paus, R., and Foitzik, K., "In search of the "hair cycle clock": a guided tour," Differentiation. 72, 489-511 (2004) [16] Tiede, S., et al., "Hair follicle stem cells: walking the maze," Eur J Cell Biol. 86, 355-376 (2007) [17] Plikus M.V., S. J. P., Chuong C.M. Mouse skin ectodermal organs. In: B. S. Fox J., Davisson M. (ed.), The mouse in biomedical research, pp. 691-694. New York: Academic Press, 2006. [18] Otberg, N., Finner, A. M., and Shapiro, J., "Androgenetic alopecia," Endocrinol Metab Clin North Am. 36, 379-398 (2007) [19] Ghanaat, M., "Types of hair loss and treatment options, including the novel low-level light therapy and its proposed mechanism," South Med J. 103, 917-921 (2010) [20] Itami, S., and Inui, S., "Role of androgen in mesenchymal epithelial interactions in human hair follicle," J Investig Dermatol Symp Proc. 10, 209-211 (2005) [21] Wikramanayake, T. C., et al., "Effects of the Lexington LaserComb on hair regrowth in the C3H/HeJ mouse model of alopecia areata," Lasers Med Sci. 27, 431-436 (2012) [22] Leavitt, M., et al., "HairMax LaserComb laser phototherapy device in the treatment of male androgenetic alopecia: A randomized, double-blind, sham device-controlled, multicentre trial," Clin Drug Investig. 29, 283-292 (2009) [23] Miura Y, Y. M., Tsuboi R, Ogawa H., "[Promotion of rat hair growth by irradiation using Super LizerTM.]," Jpn J Dermatol. 109, 2149-2152 (1999) Proc. of SPIE Vol. 8932 89320X-10

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