190
Views
2
CrossRef citations to date
0
Altmetric
Review Article

Recent advances in laser dermatology

, &
Pages 2-10 | Received 22 Feb 2008, Accepted 26 Sep 2008, Published online: 12 Jul 2009

References

  • Anderson R. R., Parish J. A. Selective photothermolysis: Precise microsurgery by selective absorption of pulsed radiation. Science 1983; 220: 524–7
  • Khan M., Sink R. K., Manstein D., Eimerl D., Anderson R. R. Intradermally focused infrared laser pulses. Lasers Surg Med 2005; 36: 270–80
  • Altshuler G. B., Anderson R. R., Manstein D., Zenzie H. H., Simernov M. Z. Extended theory of selective photothermolysis. Lasers Surg Med 2001; 29: 416–32
  • Fitzpatrick R. E., Goldman M. P., Satur N. M. Pulsed carbon dioxide laser treatment of photoaged facial skin. Arch Dermatol 1996; 132: 395–402
  • Ho C., Nguyen Q., Lowe N. J., Griffin M. E., Lask G. Laser resurfacing in pigmented skin. Dermatol Surg 1995; 21: 1035–7
  • Goldberg D. J. Full‐face nonablative dermal remodeling with a 1320 nm Nd:YAG laser. Dermatol Surg 2000; 26: 915–18
  • Alster T. S. New laser system offers another skin treatment option. Skin and Allergy News 2006; Spring: 12
  • Jih M. H., Goldberg L. H., Kimyai‐Asadi A. Fractional photothermolysis for photoaging of hands. Dermatol Surg 2008; 34: 73–8
  • Hantash B. M., Mahmood M. B. Fractional photothermolysis: A novel aesthetic laser surgery modality. Dermatol Surg 2007; 33: 525–34
  • Manstein D., Herron S., Sink R. K., Tanner H., Anderson R. R. Fractional photothermolysis: A new concept for cutaneous remodeling using microscopic patterns of thermal injury. Lasers Med Surg 2004; 34: 426–38
  • Kouba D. J., Fincher E. F., Moy R. L. Nevus of Ota successfully treated by fractional photothermolysis using a fractionated 1440‐nm Nd:YAG laser. Arch Dermatol 2008; 144: 156–8
  • Clementoni M. T., Gilardino P., Muti G. F., Beretta D., Schianchi R. Non‐sequential fractional ultrapulsed CO2 resurfacing of photoaged facial skin: Preliminary clinical report. J Cosmet Laser Ther 2007; 9: 218–25
  • Marmur E. S., Schmults C. D., Goldberg D. J. A review of laser and photodynamic therapy for the treatment of nonmelanoma skin cancer. Dermatol Surg 2004; 30: 264–71
  • Pollock B., Turner D., Stringer R. A., Bojar V., Goulden G., Stables I., et al. Topical aminolevulinic acid photodynamic therapy for the treatment of acne vulgaris. Dermatol Surg 2004; 151: 616–21
  • Hongcharu W., Taylor C. R., Chang Y., Aghassi D., Suthamjariya K., Anderson R. R. Topical ALA – photodynamic therapy for the treatment of acne vulgaris. J Invest Dermatol 2000; 115: 183–92
  • Itoh Y., Ninomiya Y., Tajima S., Ishibashi A. Photodynamic therapy for acne vulgaris with topical 5‐aminolevulinic acid. Arch Dermatol 2000; 136: 1093–5
  • Gold M. H. Intense pulsed light therapy for photorejuvenation enhanced with 20% aminolevulinic acid photodynamic therapy. Lasers Surg Med 2003; 15((suppl))47
  • Goldman M. P., Atkin D., Kincad S. PDT/ALA in the treatment of actinic damage: Real world experience. Lasers Surg Med 2002; 14((suppl))24
  • Alster T. S., Tanzi E. L., Welsh E. C. Photorejuvenation of facial skin with 20% 5‐aminolevulinic acid and intense pulsed light treatment: A split‐face comparison study. J Drugs Dermatol 2005; 4: 35–8
  • Marmur E. S., Phelps R., Goldberg D. J. Ultrastructural changes seen after ALA‐IPL photorejuvenation. J Cosmet Laser Ther 2005; 7: 21–4
  • Babilas P., Karrer S., Sidoroff A., Landthaler M., Szeimies R. M. Photodynamic therapy in dermatology – an update. Photodermatol Photoimmunol Photomed 2005; 21: 143–52
  • Gold M. H., Goldman M. P. 5‐aminolevulinic acid therapy: Where we have been and where we are going. Dermatol Surg 2004; 30: 1083–4
  • Kennedy J. C., Pottier R. C., Pross D. C. Photodynamic therapy with endogenous photoporphyrin IX: Basic principles and present clinical experience. J Photochem Photobiol B 1990; 6: 143–8
  • Szeimies R. M., Dräger J., Abels C., Landthaler M. History of photodynamic therapy in dermatology. Photodynamic therapy and fluorescence diagnosis in dermatology, P. G Calzavara‐Pinton, R. M Szeimies, B Ortel. Elsevier, Amsterdam 2001; 3–16
  • Zelickson B. D. Histological and ultrastructural evaluation of the effects of a radiofrequency‐based non‐ablative dermal remodeling device. Arch Dermatol 2004; 2: 204–9
  • Hsu T. S., Kaminer M. The use of nonablative radiofrequency technology to tighten the lower face and neck. Semin Cutan Med Surg 2003; 22: 115–23
  • Fritz M., Counters J. T., Zelickson B. D. Radiofrequency treatment for middle and lower face laxity. Arch Facial Plast Surg 2004; 6: 370–3
  • Abraham M. T., Chiang S. K., Keller G. S., Rawnsley J. D., Blackwell K. E., Elashoff D. A. Clinical evaluation of non‐ablative radiofrequency facial rejuvenation. J Cosmet Laser Ther 2004; 6: 136–44
  • Fitzpatrick R., Geronemus R., Goldberg D., Kaminer M., Klimer S., Ruiz‐Esparza J. Multicenter study of noninvasive radiofrequency treatment for periorbital tissue tightening. Lasers Surg Med 2003; 33: 232–42
  • Alster T. S., Tanzi E. Improvement of neck and cheek laxity with a nonablative radiofrequency device. Dermatol Surg 2004; 30: 503–7
  • Goldberg D. J., Silapunt S. Hair removal using a long‐pulsed Nd:YAG laser: Comparison at fluences of 50, 80, 100 J/cm. Dermatol Surg 2001; 27: 434–6
  • Anderson R. R., Parish J. A. Selective photothermolysis: Precise microsurgery by selective absorption of pulsed radiation. Science 1983; 220: 524–7
  • Cannarozzo G., Bonan P., Campolmi P. Epilation with Nd:YAG laser: A brief analysis of the technical application methods: Results and pre‐ and post‐treatment procedures. J Cosmet Laser Ther 2003; 5: 189–91
  • Battle E. F., Hobbs L. M. Laser assisted hair removal for darker skin types. Dermatol Ther 2004; 17: 177–83
  • Chan H. H., Ying S. Y., Ho W. S., Wong D. S., Lam L. K. An in vivo study comparing the efficacy and complications of diode laser and long‐pulsed Nd:YAG laser in hair removal in Chinese patients. Dermatol Surg 2001; 27: 950–4
  • Adrian R. M., Shay K. P. 800 nm diode laser hair removal in African American patients: A clinical and histological study. J Cutan Laser Ther 2000; 2: 183–90
  • Sadick N. S., Prieto V. G. The use of new diode laser for hair removal. Dermatol Surg 2003; 29: 30–3
  • Battle E., Suthamjariya K., Alora M., Pali K., Anderson R. Very long pulse (20–200 ms) diode laser for hair removal on all skin types. Lasers Surg Med 2000; 12((suppl))21
  • Alster T. S., Bryan H., Williams C. M. Long pulsed Nd:YAG assisted hair removal in pigmented skin: A clinical and histological evaluation. Arch Dermatol 2001; 137: 885–9
  • Lorenz S., Brunnberg S., Landthaler M., Hohenleutner U. Hair removal with a long pulsed Nd:YAG laser: A prospective study with one year follow up. Lasers Surg Med 2002; 30: 127–34
  • Rogachefsky A. S., Becker K., Weiss G., Goldberg D. J. Evaluation of a long‐pulsed Nd:YAG laser at different parameters: An analysis of both fluence and pulse duration. Dermatol Surg 2002; 28: 932–6
  • Tanzi E. L., Alster T. S. Long pulsed 1064‐nm Nd:YAG laser assisted hair removal in all skin types. Dermatol Surg 2004; 30: 13–17
  • Levy J. L., Trelles M. A., DeRamecourt A. Epilation with a long‐pulse 1064nm Nd:YAG laser in facial hirsuitism. J Cosmet Laser Ther 2001; 3: 175–9
  • Ferraro G. A., Perrotta A., Rossano F., D'Andrea F. Neodymium:yttrium‐aluminum‐garnet long pulse laser for the elimination of superfluous hair. Aesthetic Plast Surg 2004; 4: 23–9
  • Bencini P. L., Luci A., Galimberti M., Ferranti G. Long term epilation with a long‐pulsed neodymium:YAG laser. Dermatol Surg 1999; 25: 175–8
  • Goh C. L. Comparative study on a single treatment response to long pulse Nd:YAG lasers and intense pulse light therapy for hair removal on skin type IV–VI – are longer wavelength lasers preferred over shorter wavelength light for assisted hair removal. J Dermatolog Treat 2003; 14: 243–7
  • Sand M., Bechara F. G., Sand D., Altmeyer P., Hoffmann K. A randomized, controlled, double‐blind study evaluating melanin‐encapsulated liposomes as a chromophore for laser hair removal of blond, white, and gray hair. Ann Plast Surg 2007; 58: 551–4
  • Sadick N. S. Combination radiofrequency and light energies: Electro‐optical synergy technology in esthetic medicine. Dermatol Surg 2005; 31: 1211–17
  • Sadick N. S., Sorhaindo L. The radiofrequency frontier: A review of radiofrequency and combined radiofrequency pulsed‐light technology in aesthetic medicine. Facial Plast Surg 2005; 21: 131–8
  • Sadick N. S., Makino Y. Selective electro‐thermolysis in aesthetic medicine: A review. Lasers Surg Med 2004; 34: 91–7
  • Sadick N. S., Laughlin S. A. Effective epilation of white and blond hair using combined radiofrequency and optical energy. J Cosmet Laser Ther 2004; 6: 27–31
  • Schroeter C. A., Sharma S., Mbonu N. C., Reineke T., Neumann H. A. M. Blond hair removal using ELOS systems. J Cosmet Laser Ther 2006; 8: 82–6
  • Sadick N., Laughlin S. A. Effective epilation of white and blond hair using combined radiofrequency and optical energy. J Cosmet Laser Ther 2004; 6: 27–31
  • Sadick N. S., Shaoul J. Hair removal using a combination of conducted radiofrequency and optical energies – an 18‐month follow‐up. J Cosmet Laser Ther 2004; 6: 21–6
  • Yaghmai D., Garden J. M., Bakus A. D., Spenceri E. A., Hruza G. J., Kiler S. L. Hair removal using a combination radio‐frequency and intense pulsed light source. J Cosmet Laser Ther 2004; 6: 201–7
  • Dierickx G. Hair removal by lasers and intense pulse light sources. Dermatol Clin 2002; 20: 135–46
  • Goldberg D. J., Marmur E. S., Hussain M. Treatment of terminal and vellus non‐pigmented hairs with an optical/bipolar radiofrequency source – with and without pre‐treatment using topical aminolevulinic acid. J Cosmet Laser Ther 2005; 7: 25–8
  • Rogachefsky A. S., Silapunt S., Goldberg D. J. Evaluation of a new super‐long‐pulsed 810 nm diode laser for the removal of unwanted hair: The concept of thermal damage time. Dermatol Surg 2002; 28: 410–14

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.