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In the book of 'Lasers in Dermatology: Parameters and Choice,' specific laser parameters are described around each laser instrument for these novices. However, since it is impossible to treat effective and safe laser simply by memorizing parameters, it is described based on the important principles that is essential for parameter control. This book describes a total of 13 lasers and energy-based devices : Q-switched ruby laser, Q-switched Nd:YAG laser, picosecond alexandrite laser, long-pulsed Nd:YAG laser, pulsed-dye laser, intense pulsed light (IPL), long-pulsed alexandrite laser, Er:YAG…mehr
In the book of 'Lasers in Dermatology: Parameters and Choice,' specific laser parameters are described around each laser instrument for these novices. However, since it is impossible to treat effective and safe laser simply by memorizing parameters, it is described based on the important principles that is essential for parameter control.
This book describes a total of 13 lasers and energy-based devices : Q-switched ruby laser, Q-switched Nd:YAG laser, picosecond alexandrite laser, long-pulsed Nd:YAG laser, pulsed-dye laser, intense pulsed light (IPL), long-pulsed alexandrite laser, Er:YAG laser, CO2 fractional laser, fractional microneedle radiofrequency (RF), light-emitting diode (LED), skin equipment, and 1,450nm diode laser.
And for novices, it explains the simple principles of lasers and the concepts you need to know when you start skin care and laser. It also explains the treatment of scars and melasma, which are the diseases that novices are most interested in. Finally, it describes post-inflammatory (PIH) and side effects and complications that novices are embarrassed about in diagnosis and treatment.
Jae Dong Lee, MD, Graduated from Medical College of the Catholic University of Korea The degree of Master of Medical Science in the Catholic University of Korea The Chief Academic Officer in Korean Medical Skin Care Society The Laser Academic Officer in Korean Aesthetic Surgery and Laser Society The Chairman in Korean Dermatologic Laser Association Director in MISODAM clinic in Daejeon, Korea Publications - The principles and choice of laser in dermatology (Korean language) - Melasma, diagnosis and treatment of melasma (Korean language) - Laser dermatology: Choice and treatment (Korean language) - Principles and Choice of Laser Treatment in Dermatology Min Jin Maya Oh, MD The Academic Officer in Korean Academy of Melasma The Vice-Chairman in Korean Dermatologic Laser Association Former AsiaPacific Regional Therapeutic Expert for Botox, Allergan Former Medical reviewer for MFDS (Ministry of Food and Drug Safety) Director in ARA clinic in Incheon, Korea Author of Principles and Choice of Laser Treatment in Dermatology, published by Springer (2020)
Inhaltsangabe
I. Principles of Laser.- 1. Six parameters of lasers in dermatology.- II. Choice of laser and medical skin care.- 2. Choice of laser.- 3. Medical skin care.- III. Lasers and parameters.- 4. Q-switched Ruby laser and absorption coefficient.- 5. Q-switched Nd:YAG laser and subcellular selective photothermolysis.- 6. Alexandrite picosecond laser and stress confinement time.- 7. Long-pulsed Nd:YAG laser and Arrhenius equation.- 8. Pulsed-dye laser and macropulse.- 9. Intense pulsed light and extended theory of selective photothermolysis.- 10. Long-pulsed alexandrite laser and thermal kinetic selectivity.- 11. CO2, Er:YAG laser and residual thermal damage.- 12. CO2 fractional laser and fractional photothermolysis.- IV. Energy-based devices and parameters.- 13. Fractional microneedle radiofrequency and conductivity.- 14. Light emitting diode and Arndt-Schultz curve.- 15. Skin care equipment and calcium gradient.- V. Treatment of acne, scar and melasma.- 16. Photodynamic therapy and consensusof acne treatment.- 17. Acne atrophic scar and hisology.- 18. Melasma and melanogenesis.- VI. Complications of laser treatment.- 19. Pathogenesis and treatment of post-inflammatory hyperpigmentation.- 20. Complications and its treatment in laser treatment.
I. Principles of Laser.- 1. Six parameters of lasers in dermatology.- II. Choice of laser and medical skin care.- 2. Choice of laser.- 3. Medical skin care.- III. Lasers and parameters.- 4. Q-switched Ruby laser and absorption coefficient.- 5. Q-switched Nd:YAG laser and subcellular selective photothermolysis.- 6. Alexandrite picosecond laser and stress confinement time.- 7. Long-pulsed Nd:YAG laser and Arrhenius equation.- 8. Pulsed-dye laser and macropulse.- 9. Intense pulsed light and extended theory of selective photothermolysis.- 10. Long-pulsed alexandrite laser and thermal kinetic selectivity.- 11. CO2, Er:YAG laser and residual thermal damage.- 12. CO2 fractional laser and fractional photothermolysis.- IV. Energy-based devices and parameters.- 13. Fractional microneedle radiofrequency and conductivity.- 14. Light emitting diode and Arndt-Schultz curve.- 15. Skin care equipment and calcium gradient.- V. Treatment of acne, scar and melasma.- 16. Photodynamic therapy and consensusof acne treatment.- 17. Acne atrophic scar and hisology.- 18. Melasma and melanogenesis.- VI. Complications of laser treatment.- 19. Pathogenesis and treatment of post-inflammatory hyperpigmentation.- 20. Complications and its treatment in laser treatment.
I. Principles of Laser.- 1. Six parameters of lasers in dermatology.- II. Choice of laser and medical skin care.- 2. Choice of laser.- 3. Medical skin care.- III. Lasers and parameters.- 4. Q-switched Ruby laser and absorption coefficient.- 5. Q-switched Nd:YAG laser and subcellular selective photothermolysis.- 6. Alexandrite picosecond laser and stress confinement time.- 7. Long-pulsed Nd:YAG laser and Arrhenius equation.- 8. Pulsed-dye laser and macropulse.- 9. Intense pulsed light and extended theory of selective photothermolysis.- 10. Long-pulsed alexandrite laser and thermal kinetic selectivity.- 11. CO2, Er:YAG laser and residual thermal damage.- 12. CO2 fractional laser and fractional photothermolysis.- IV. Energy-based devices and parameters.- 13. Fractional microneedle radiofrequency and conductivity.- 14. Light emitting diode and Arndt-Schultz curve.- 15. Skin care equipment and calcium gradient.- V. Treatment of acne, scar and melasma.- 16. Photodynamic therapy and consensusof acne treatment.- 17. Acne atrophic scar and hisology.- 18. Melasma and melanogenesis.- VI. Complications of laser treatment.- 19. Pathogenesis and treatment of post-inflammatory hyperpigmentation.- 20. Complications and its treatment in laser treatment.
I. Principles of Laser.- 1. Six parameters of lasers in dermatology.- II. Choice of laser and medical skin care.- 2. Choice of laser.- 3. Medical skin care.- III. Lasers and parameters.- 4. Q-switched Ruby laser and absorption coefficient.- 5. Q-switched Nd:YAG laser and subcellular selective photothermolysis.- 6. Alexandrite picosecond laser and stress confinement time.- 7. Long-pulsed Nd:YAG laser and Arrhenius equation.- 8. Pulsed-dye laser and macropulse.- 9. Intense pulsed light and extended theory of selective photothermolysis.- 10. Long-pulsed alexandrite laser and thermal kinetic selectivity.- 11. CO2, Er:YAG laser and residual thermal damage.- 12. CO2 fractional laser and fractional photothermolysis.- IV. Energy-based devices and parameters.- 13. Fractional microneedle radiofrequency and conductivity.- 14. Light emitting diode and Arndt-Schultz curve.- 15. Skin care equipment and calcium gradient.- V. Treatment of acne, scar and melasma.- 16. Photodynamic therapy and consensusof acne treatment.- 17. Acne atrophic scar and hisology.- 18. Melasma and melanogenesis.- VI. Complications of laser treatment.- 19. Pathogenesis and treatment of post-inflammatory hyperpigmentation.- 20. Complications and its treatment in laser treatment.
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