1,826
Views
100
CrossRef citations to date
0
Altmetric
Original Article

A study to determine the efficacy of combination LED light therapy (633 nm and 830 nm) in facial skin rejuvenation

, &
Pages 196-200 | Received 01 Jul 2005, Accepted 22 Sep 2005, Published online: 12 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Giovanna Vitória Schmitz, Maycon Crispim de Oliveira Carvalho, Leandro de Lima Azevedo & Carlos José de Lima. (2023) Development of LED-based opto-mechanical instrumentation for phototherapeutic applications. Instrumentation Science & Technology 51:1, pages 32-44.
Read now
Andreas Nikolis, Steven Bernstein, Brian Kinney, Nicolo Scuderi, Shipra Rastogi & John S Sampalis. (2016) A randomized, placebo-controlled, single-blinded, split-faced clinical trial evaluating the efficacy and safety of KLOX-001 gel formulation with KLOX light-emitting diode light on facial rejuvenation. Clinical, Cosmetic and Investigational Dermatology 9, pages 115-125.
Read now

Articles from other publishers (97)

Paula Montero, Inés Roger, Javier Milara & Julio Cortijo. (2023) Damaging effects of UVA, blue light, and infrared radiation: in vitro assessment on a reconstructed full-thickness human skin. Frontiers in Medicine 10.
Crossref
Jessica Mineroff, Evan Austin, Eric Feit, Anthony Ho, Brian Lowe, Justin Marson, Jacob Mojeski, Todd Wechter, Julie K. Nguyen & Jared Jagdeo. (2023) Male facial rejuvenation using a combination 633, 830, and 1072 nm LED face mask. Archives of Dermatological Research.
Crossref
Konrad Kijak, Łukasz Kopacz, Grzegorz Cieślar, Zbigniew Śliwiński, Piotr Skomro, Małgorzata Kowacka, Paweł Berczyński & Danuta Lietz-Kijak. (2023) An interdisciplinary concept for the treatment of Bell’s palsy – a case report. Fizjoterapia Polska 23:2, pages 62-69.
Crossref
Shuang-Qiao Sun, Jing-Jing Shen, Yu-Fei Wang, Yu-Tong Jiang, Lin-Fu Chen, Hua Xin, Jiang-Nan Wang, Xiao-Bo Shi, Xiao-Zhao Zhu, Qi Sun, Liang-Sheng Liao, Qian Chen, Man-Keung Fung & Shuit-Tong Lee. (2023) Red organic light-emitting diodes based photobiomodulation therapy enabling prominent hair growth. Nano Research 16:5, pages 7164-7170.
Crossref
Graeme Ewan Glass. (2023) Photobiomodulation: A Systematic Review of the Oncologic Safety of Low-Level Light Therapy for Aesthetic Skin Rejuvenation. Aesthetic Surgery Journal 43:5, pages NP357-NP371.
Crossref
Jagan Singh Meena, Su Bin Choi, Seung-Boo Jung & Jong-Woong Kim. (2023) Electronic textiles: New age of wearable technology for healthcare and fitness solutions. Materials Today Bio 19, pages 100565.
Crossref
Lidiane Rocha MotaIvone da Silva DuarteThais Rodrigues GalacheKatia Maria dos Santos PrettiOrlando Chiarelli NetoLara Jansiski MottaAnna Carolina Ratto Tempestini HorlianaDaniela de Fátima Teixeira da SilvaChristiane Pavani. (2023) Photobiomodulation Reduces Periocular Wrinkle Volume by 30%: A Randomized Controlled Trial. Photobiomodulation, Photomedicine, and Laser Surgery 41:2, pages 48-56.
Crossref
Pablo Naranjo GarcíaRodolfo López Andrino. (2023) Feasibility and Safety of Using Combined Light-Emitting Diodes Versus Intense Pulsed Light Technology for the Improvement of Facial Hypervascularization in Adult Patients. Photobiomodulation, Photomedicine, and Laser Surgery 41:2, pages 64-72.
Crossref
Roy Kennedy. (2023) Phototherapy as a Treatment for Dermatological Diseases, Cancer, Aesthetic Dermatologic Conditions and Allergenic Rhinitis in Adult and Paediatric Medicine. Life 13:1, pages 196.
Crossref
Ji Hyeon Ryu, Jisu Park, Ji Won Kim, Yong-Il Shin, Sang Don Lee, Youngkwang Oh & Suk-Woong Kang. (2023) Exploring the Effects of 630 nm Wavelength of Light-Emitting Diode Irradiation on the Proliferation and Migration Ability of Human Biceps Tendon Fibroblast Cells. Clinics in Orthopedic Surgery 15:1, pages 166.
Crossref
Cari Green & Gabriel Borden. 2023. Image-Guided Aesthetic Treatments. Image-Guided Aesthetic Treatments 111 125 .
Yongjin Park, Hye-Ryung Choi, Yongmin Jeon, Hyuncheol Kim, Jung Won Shin, Chang-Hun Huh, Kyoung-Chan Park & Kyung-Cheol Choi. (2022) Cell proliferation effect of deep-penetrating microcavity tandem NIR OLEDs with therapeutic trend analysis. Scientific Reports 12:1.
Crossref
Konrad Kijak, Grzegorz Cieślar, Małgorzata Kowacka, Piotr Skomro, Helena Gronwald, Adam Garstka & Danuta Lietz-Kijak. (2022) Cone Beam Computed Tomography in the Assessment of the Effectiveness of Physical Therapy with the Use of the Electromagnetic Field Combined with Light Radiation Emitted by LEDs in the Treatment of Inflammation of the Paranasal Sinuses—A Case Study. International Journal of Environmental Research and Public Health 19:20, pages 13570.
Crossref
Anna Takeuchi, Takeshi Fukumoto & Chikako Nishigori. (2021) Photo urticaria caused by exposure to LED emitting 633‐nm wavelength during hot yoga exercise. Photodermatology, Photoimmunology & Photomedicine 38:4, pages 395-396.
Crossref
Paul Charlson. (2022) Low-level light treatments. Journal of Aesthetic Nursing 11:Sup5, pages 12-14.
Crossref
Danuta Lietz-Kijak & Roman Ardan. (2022) Physiotherapeutic Reduction of Orofacial Pain Using Extremely Low-Frequency Electromagnetic Field and Light-Emitting Diode Therapy—A Pilot Study. Pain Research and Management 2022, pages 1-8.
Crossref
Yong Ho Yeo, Kiramage Chathuranga, Jong Soo Lee, Jaseung Koo & Won Ho Park. (2022) Multifunctional and thermoresponsive methylcellulose composite hydrogels with photothermal effect. Carbohydrate Polymers 277, pages 118834.
Crossref
Paul Charlson. (2021) Light-emitting diode treatments and indications for treatment. Journal of Aesthetic Nursing 10:7, pages 288-291.
Crossref
Hyeyoon Goo, SangJoon Mo, Hyeong Ju Park, Min Young Lee & Jin-Chul Ahn. (2021) Treatment with LEDs at a wavelength of 642 nm enhances skin tumor proliferation in a mouse model. Biomedical Optics Express 12:9, pages 5583.
Crossref
Wen‐Hwa Li, InSeok Seo, Brian Kim, Ali Fassih, Michael D. Southall & Ramine Parsa. (2021) Low‐level red plus near infrared lights combination induces expressions of collagen and elastin in human skin in vitro . International Journal of Cosmetic Science 43:3, pages 311-320.
Crossref
Graeme Ewan Glass. (2021) Photobiomodulation: The Clinical Applications of Low-Level Light Therapy. Aesthetic Surgery Journal 41:6, pages 723-738.
Crossref
Vinh Van Tran, Minhe Chae, Ju-Young Moon & Young-Chul Lee. (2021) Light emitting diodes technology-based photobiomodulation therapy (PBMT) for dermatology and aesthetics: Recent applications, challenges, and perspectives. Optics & Laser Technology 135, pages 106698.
Crossref
Govind B. Nair & S.J. Dhoble. 2021. The Fundamentals and Applications of Light-Emitting Diodes. The Fundamentals and Applications of Light-Emitting Diodes 201 225 .
L. S. Kholupova & S. I. Surkichin. (2020) Assessment of safety of influence of radiation of lengths of waves of 410, 580, and 630 nanometers for skin and a mucous membrane. Russian Journal of Physiotherapy, Balneology and Rehabilitation 19:2, pages 78-82.
Crossref
Myung Hyun Kang, Han Young Yu, Goon-Tae Kim, Ji Eun Lim, Seunghun Jang, Tae-Sik Park & Joung Kyu Park. (2020) Near-infrared-emitting nanoparticles activate collagen synthesis via TGFβ signaling. Scientific Reports 10:1.
Crossref
Dae Sung Kim, Ki Uk Song, Hae Kwang Lee, Jong Ho Park, Beom Joon Kim, Kwang Ho Yoo & Jin Hee Shin. (2020) Synergistic effects of using novel home‐use 660‐ and 850‐nm light‐emitting diode mask in combination with hyaluronic acid ampoule on photoaged Asian skin: A prospective, controlled study. Journal of Cosmetic Dermatology 19:10, pages 2606-2615.
Crossref
Janice Natasha C. Ng, Rungsima Wanitphakdeedecha & Chadakan Yan. (2020) Efficacy of home‐use light‐emitting diode device at 637 and 854‐nm for facial rejuvenation: A split‐face pilot study. Journal of Cosmetic Dermatology 19:9, pages 2288-2294.
Crossref
Mi Yeon Shin, Woo Suk Chong, Kyong Kim & Chang Ho Yu. (2020) Study on injection molding analysis of glasses-type wearable device for facial skin care. Technology and Health Care 28, pages 473-485.
Crossref
Myung Sub Lim, Minwoo Nam, Seungyeop Choi, Yongmin Jeon, Young Hyun Son, Sung-Min Lee & Kyung Cheol Choi. (2020) Two-Dimensionally Stretchable Organic Light-Emitting Diode with Elastic Pillar Arrays for Stress Relief. Nano Letters 20:3, pages 1526-1535.
Crossref
Caiwei Zheng, Ali Rajabi-Estarabadi, Melanie M. Hirsch & Keyvan Nouri. 2020. Practical Introduction to Laser Dermatology. Practical Introduction to Laser Dermatology 201 218 .
Marco Antonio Caldieraro, Marco Maiello, Olivia Losiewicz & Paolo Cassano. 2020. Clinical Handbook of Anxiety Disorders. Clinical Handbook of Anxiety Disorders 283 295 .
Suparuj Lueangarun & Therdpong Tempark. (2019) Successful Treatment of Digital Ischemia Following a Carbon Dioxide Laser and Tourniquet for a Digital Procedure With Adjuvant Low-Level Laser Therapy. Journal of Lasers in Medical Sciences 10:3, pages 254-256.
Crossref
Myeongwoo Kang, Chihyoung Shim, Sangcheol Na, Byungjun Lee, Noo Li Jeon & Hoyoung Yun. (2018) Improved cosmeceutical phototherapy using microneedle. Microsystem Technologies 25:7, pages 2547-2552.
Crossref
Rungsima Wanitphakdeedecha, Thanawan Iamphonrat, Weeranut Phothong, Sasima Eimpunth & Woraphong Manuskiatti. (2018) Local and systemic effects of low-level light therapy with light-emitting diodes to improve erythema after fractional ablative skin resurfacing: a controlled study. Lasers in Medical Science 34:2, pages 343-351.
Crossref
Marco Antonio Caldieraro & Paolo Cassano. 2019. The Massachusetts General Hospital Guide to Depression. The Massachusetts General Hospital Guide to Depression 233 246 .
Nomakhosi MpofanaHeidi Abrahamse. (2018) The Management of Melasma on Skin Types V and VI Using Light Emitting Diode Treatment. Photomedicine and Laser Surgery 36:10, pages 522-529.
Crossref
Beata Malysa, Andries Meijerink & Thomas Jüstel. (2018) Temperature dependent Cr3+ photoluminescence in garnets of the type X3Sc2Ga3O12 (X = Lu, Y, Gd, La). Journal of Luminescence 202, pages 523-531.
Crossref
Elisabetta Sorbellini, Mariangela Rucco & Fabio Rinaldi. (2018) Photodynamic and photobiological effects of light-emitting diode (LED) therapy in dermatological disease: an update. Lasers in Medical Science 33:7, pages 1431-1439.
Crossref
Yongmin Jeon, Hye-Ryung Choi, Myungsub Lim, Seungyeop Choi, Hyuncheol Kim, Jeong Hyun Kwon, Kyoung-Chan Park & Kyung Cheol Choi. (2018) A Wearable Photobiomodulation Patch Using a Flexible Red-Wavelength OLED and Its In Vitro Differential Cell Proliferation Effects. Advanced Materials Technologies 3:5, pages 1700391.
Crossref
G. Sanclemente, V. Ruiz-Cañas, J.M. Miranda, A.P. Ferrín, P.A. Ramirez & G.N. Hernandez. (2018) Photodynamic Therapy Interventions in Facial Photodamage: A Systematic Review. Actas Dermo-Sifiliográficas (English Edition) 109:3, pages 218-229.
Crossref
G. Sanclemente, V. Ruiz-Cañas, J.M. Miranda, A.P. Ferrín, P.A. Ramirez & G.N. Hernandez. (2018) Photodynamic Therapy Interventions in Facial Photodamage: A Systematic Review. Actas Dermo-Sifiliográficas 109:3, pages 218-229.
Crossref
Michael R. Hamblin. 2018. Encyclopedia of Modern Optics. Encyclopedia of Modern Optics 100 135 .
R. Glen Calderhead. 2018. Lasers in Dermatology and Medicine. Lasers in Dermatology and Medicine 285 337 .
Luiza Pitassi. 2018. Lasers, Lights and Other Technologies. Lasers, Lights and Other Technologies 73 87 .
Robert Glen Calderhead & Yohei Tanaka. 2017. Photomedicine - Advances in Clinical Practice. Photomedicine - Advances in Clinical Practice.
Loraine Sydney Kagan & James T. Heaton. (2017) The Effectiveness of Low-Level Light Therapy in Attenuating Vocal Fatigue. Journal of Voice 31:3, pages 384.e15-384.e23.
Crossref
C. Noé, M. Pelletier-Aouizerate & H. Cartier. (2017) LED en dermatologie. Annales de Dermatologie et de Vénéréologie 144:4, pages 301-314.
Crossref
Chan Hee NamByung Cheol ParkMyung Hwa KimEun Hee Choi & Seung Phil Hong. (2017) The Efficacy and Safety of 660 nm and 411 to 777 nm Light-Emitting Devices for Treating Wrinkles. Dermatologic Surgery 43:3, pages 371-380.
Crossref
Hee-Kyoung Kim & Jung-Hyun Choi. (2017) Effects of radiofrequency, electroacupuncture, and low-level laser therapy on the wrinkles and moisture content of the forehead, eyes, and cheek. Journal of Physical Therapy Science 29:2, pages 290-294.
Crossref
Anna Baker. (2016) Light-emitting diode red light therapy: evidence base for aesthetic indications. Journal of Aesthetic Nursing 5:10, pages 478-482.
Crossref
Mariëlle P. J. Aarts, Myriam B. C. Aries, Adonia Diakoumis & Joost van Hoof. (2016) Shedding a Light on Phototherapy Studies with People having Dementia. American Journal of Alzheimer's Disease & Other Dementiasr 31:7, pages 551-563.
Crossref
S. K. Kim, H. R. You, S. H. Kim, S. J. Yun, S. C. Lee & J. B. Lee. (2016) Skin photorejuvenation effects of light-emitting diodes (LEDs): a comparative study of yellow and red LEDs in vitro and in vivo . Clinical and Experimental Dermatology 41:7, pages 798-805.
Crossref
Michele Pelletier-Aouizérate. 2016. Cosmetic Medicine and Surgery. Cosmetic Medicine and Surgery 395 416 .
Mossum K. Sawhney & Michael R. Hamblin. 2016. Handbook of Low-Level Laser Therapy. Handbook of Low-Level Laser Therapy 1017 1048 .
Paolo Cassano, Abigail R. Archibald & Dan V. Iosifescu. 2016. Handbook of Low-Level Laser Therapy. Handbook of Low-Level Laser Therapy 809 824 .
A. J. Greaves. (2016) The effects of narrowbands of visible light upon some skin disorders: a review. International Journal of Cosmetic Science 38:4, pages 325-345.
Crossref
Andrew Mamalis, Eugene Koo & Jared Jagdeo. (2016) Resveratrol Prevents Reactive Oxygen Species–Induced Effects of Light-Emitting Diode–Generated Blue Light in Human Skin Fibroblasts. Dermatologic Surgery 42:6, pages 727-732.
Crossref
Luiza Pitassi. 2017. Daily Routine in Cosmetic Dermatology. Daily Routine in Cosmetic Dermatology 1 15 .
R. Chabert, L. Fouque, S. Pinacolo, N. Garcia-Gimenez, M. Bonnans, K. Cucumel & N. Domloge. (2015) Evaluation of light-emitting diodes (LED) effect on skin biology ( in vitro study) . Skin Research and Technology 21:4, pages 426-436.
Crossref
David McDaniel, Robert Weiss, Roy Geronemus, Corinne Granger & and Leila Kanoun‐Copy. 2015. Cosmetic Dermatology. Cosmetic Dermatology 456 462 .
C. Noé, M. Pelletier-Aouizerate & H. Cartier. (2015) LED in dermatologia. EMC - Cosmetologia Medica e Medicina degli Inestetismi Cutanei 12:1, pages 1-12.
Crossref
Meghan T. Hession, Alina Markova & Emmy M. Graber. (2015) A Review of Hand-Held, Home-Use Cosmetic Laser and Light Devices. Dermatologic Surgery 41:3, pages 307-320.
Crossref
HAK SUN KIM, WON SANG PARK, JONG-IN BAEK, BO-SUB LEE, DAE SUNG YOO & SI JUN PARK. (2015) Continuous irradiation with a 633-nm light-emitting diode exerts an anti-aging effect on human skin cells. International Journal of Molecular Medicine 35:2, pages 383-390.
Crossref
Andrew Mamalis, Manveer Garcha & Jared Jagdeo. (2015) Light emitting diode‐generated blue light modulates fibrosis characteristics: Fibroblast proliferation, migration speed, and reactive oxygen species generation. Lasers in Surgery and Medicine 47:2, pages 210-215.
Crossref
Ji-Sun Kim, Gu-In Jung, Tae-Hee Lee, Ju-Hyeon Choi, Han-Byeol Oh, A-Hee Kim, Hyon-Chel Jung & Jae-Hoon Jun. (2015) Detection of Color Information Using Optical Method. The Transactions of The Korean Institute of Electrical Engineers 64:1, pages 159-164.
Crossref
Andrew Mamalis & Jared Jagdeo. (2015) Light-Emitting Diode–Generated Red Light Inhibits Keloid Fibroblast Proliferation. Dermatologic Surgery 41:1, pages 35-39.
Crossref
Tianhui Niu, Yan Tian, Qu Ren, Lizhao Wei, Xiaoxin Li & Qing Cai. (2014) Red Light Interferes in UVA-Induced Photoaging of Human Skin Fibroblast Cells. Photochemistry and Photobiology 90:6, pages 1349-1358.
Crossref
김승면, 원영호, 이지범 & 이승철. (2014) Effectiveness of Home-use Light Emitting Diode Device for Seborrheic Dermatitis of the Scalp: a Preliminary Study. Korean Journal of Medical Mycology 19:2, pages 31-38.
Crossref
Kui Young Park, Sun Young Choi, Seog Kyun Mun, Beom Joon Kim & Myeung Nam Kim. (2014) Combined treatment with 578-/511-nm copper bromide laser and light-emitting diodes for post-laser pigmentation: a report of two cases. Dermatologic Therapy 27:2, pages 121-125.
Crossref
Alexander WunschKarsten Matuschka. (2014) A Controlled Trial to Determine the Efficacy of Red and Near-Infrared Light Treatment in Patient Satisfaction, Reduction of Fine Lines, Wrinkles, Skin Roughness, and Intradermal Collagen Density Increase. Photomedicine and Laser Surgery 32:2, pages 93-100.
Crossref
In Young OhBeom Joon KimMyeung Nam Kim. (2014) Depressed Facial Scars Successfully Treated with Autologous Platelet-Rich Plasma and Light-Emitting Diode Phototherapy at 830 nm. Annals of Dermatology 26:3, pages 417.
Crossref
Kui Young ParkTae Young HanIn Su KimIn Kwon YeoBeom Joon KimMyeung Nam Kim. (2013) The Effects of 830 nm Light-Emitting Diode Therapy on Acute Herpes Zoster Ophthalmicus: A Pilot Study. Annals of Dermatology 25:2, pages 163.
Crossref
Yu Shun Tian, Nan-Hyung Kim & Ai-Young Lee. (2012) Antiphotoaging Effects of Light-Emitting Diode Irradiation on Narrow-Band Ultraviolet B–Exposed Cultured Human Skin Cells. Dermatologic Surgery 38:10, pages 1695-1703.
Crossref
Jung R. CHOI, Jae K. KIM, Chong H. WON, Mi W. LEE, Eok‐S. OH & Sungeun CHANG. (2011) Prurigo pigmentosa treated with Jessner’s peel and irradiation with an 830‐nm light‐emitting diode. The Journal of Dermatology 39:5, pages 493-496.
Crossref
Shraddha Desai & Ashish C. Bhatia. 2012. Evidence-Based Procedural Dermatology. Evidence-Based Procedural Dermatology 271 286 .
Landon Pryor, Chad R. Gordon, Edward W. Swanson, Richard G. Reish, Kelly Horton-Beeman & Steven R. Cohen. (2011) Dermaplaning, Topical Oxygen, and Photodynamic Therapy: A Systematic Review of the Literature. Aesthetic Plastic Surgery 35:6, pages 1151-1159.
Crossref
J. Shaoul & R. S. Mulholland. (2011) Evaluation of the Safety and Efficacy of a Novel Home-Use Device with Diode Arrays and Contact Heating for Facial Skin Rejuvenation. Journal of Cosmetics, Dermatological Sciences and Applications 01:04, pages 119-124.
Crossref
R. Glen Calderhead. 2011. Lasers in Dermatology and Medicine. Lasers in Dermatology and Medicine 231 265 .
D. Helbig, J. C. Simon & U. Paasch. (2010) Epidermal and dermal changes in response to various skin rejuvenation methods. International Journal of Cosmetic Science 32:6, pages 458-469.
Crossref
Robert Weiss, Roy Geronemus, David McDaniel & Corinne Granger. 2010. Cosmetic Dermatology. Cosmetic Dermatology 444 449 .
Jean Francois Tremblay. 2010. Office-Based Cosmetic Procedures and Techniques. Office-Based Cosmetic Procedures and Techniques 283 284 .
Doris Helbig, Anne Moebius, Jan C. Simon & Uwe Paasch. (2010) Nonablative skin rejuvenation devices and the role of heat shock protein 70: results of a human skin explant model. Journal of Biomedical Optics 15:3, pages 038002.
Crossref
Daniel N. Sauder. (2010) Light-emitting diodes: their role in skin rejuvenation. International Journal of Dermatology 49:1, pages 12-16.
Crossref
Daniel Barolet, Charles J. Roberge, François A. Auger, Annie Boucher & Lucie Germain. (2009) Regulation of Skin Collagen Metabolism In Vitro Using a Pulsed 660nm LED Light Source: Clinical Correlation with a Single-Blinded Study. Journal of Investigative Dermatology 129:12, pages 2751-2759.
Crossref
John E. Oblong. 2009. Cosmetics Applications of Laser & Light-Based Systems. Cosmetics Applications of Laser & Light-Based Systems 301 316 .
Robert A. Weiss, Roy G. Geronemus & David H. McDaniel. 2009. Cosmetics Applications of Laser & Light-Based Systems. Cosmetics Applications of Laser & Light-Based Systems 271 280 .
Gordon H. Sasaki. 2009. Techniques in Aesthetic Plastic Surgery Series: Lasers and Non-Surgical Rejuvenation. Techniques in Aesthetic Plastic Surgery Series: Lasers and Non-Surgical Rejuvenation 101 113 .
Neil S Sadick. (2008) A study to determine the efficacy of a novel handheld light-emitting diode device in the treatment of photoaged skin. Journal of Cosmetic Dermatology 7:4, pages 263-267.
Crossref
Mario A. Trelles, Serge Mordon & R Glen Calderhead. (2008) Viewpoint 3. Experimental Dermatology 17:3, pages 231-233.
Crossref
Lübeck Ralf Paus, M. Berneburg, M. Trelles, B. Friguet, S. Ogden, M. Esrefoglu, G. Kaya, D. J. Goldberg, S. Mordon, R. G. Calderhead, C. E. M. Griffiths, J. H. Saurat & D. M. Thappa. (2008) How best to halt and/or revert UV-induced skin ageing: strategies, facts and fiction. Experimental Dermatology 17:3, pages 228-240.
Crossref
E. Victor Ross. (2007) Nonablative laser rejuvenation in men. Dermatologic Therapy 20:6, pages 414-429.
Crossref
Fabien Baez & Laurence R Reilly. (2007) The use of light-emitting diode therapy in the treatment of photoaged skin. Journal of Cosmetic Dermatology 6:3, pages 189-194.
Crossref
Seung Yoon Lee, Ki-Ho Park, Jung-Woo Choi, Jung-Kyun Kwon, Doo Rak Lee, Mi Sun Shin, Jee Sung Lee, Chung Eui You & Mi Youn Park. (2007) 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. Journal of Photochemistry and Photobiology B: Biology 88:1, pages 51-67.
Crossref
Mario A. Trelles, Serge Mordon & R. Glen Calderhead. (2006) Facial rejuvenation and light: our personal experience. Lasers in Medical Science 22:2, pages 93-99.
Crossref
Cristina Zane, Rossana Capezzera, Raffaella Sala, Marina Venturini & Piergiacomo Calzavara-Pinton. (2007) Clinical and echographic analysis of photodynamic therapy using methylaminolevulinate as sensitizer in the treatment of photodamaged facial skin. Lasers in Surgery and Medicine 39:3, pages 203-209.
Crossref
Seung Yoon Lee, Chung Eui You & Mi Youn Park. (2006) Blue and red light combination LED phototherapy for acne vulgaris in patients with skin phototype IV. Lasers in Surgery and Medicine 39:2, pages 180-188.
Crossref
Kevin Sutanto, Nurul Ridho Al Amin, Chih-Hsin Chen, Dian Luo, Chien-Hsin Chen, Sajal Biring, Chih-Chien Lee, Te-Chun Wu & Shun-Wei Liu. (2021) Vacuum Deposited Wo3/Al/Al:Ag Anode for Efficient Red Organic Light-Emitting Diodes. SSRN Electronic Journal.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.