• Title/Summary/Keyword: 808 nm diode laser

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Histological Change and Collagen Formation on Laser Wounded Rat using 808 nm Diode Laser and $CO_2$ Laser

  • Chung, Phil-Sang;Shin, Jang-In;Chang, So-Young;Ahn, Jin-Chul
    • Biomedical Science Letters
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    • v.15 no.1
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    • pp.81-86
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    • 2009
  • Lasers are necessity in our life related to the fields of medicine and cosmetic surgery. With 808 nm diode laser and $CO_2$ laser, we made some wounds on a dorsum of rat by laser irradiation. All of irradiations shows thermal effects on the whole region of skin tissues. They make wound damage depending on laser power and irradiation time. Because a collagen is plays an important role in tissue repair, we studied collagen accumulation in wound tissue. For wound healing, collagen accumulation was found in the near region of damage in epidermis and dermis layer of the rat skin. In case of the quantitative analysis of collagen in wound tissue, the amount of collagen in wound tissue by $CO_2$ laser irradiation is higher than that of 808 nm diode laser irradiation. And re-epithelialization was significantly faster in wound by $CO_2$ laser irradiation compared with that of 808 nm diode laser irradiation.

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Analysis of temperature changes and sterilization effect of diode laser for the treatment of peri-implantitis by wavelength and irradiation time (임플란트 주위염 치료용 diode laser의 파장 및 조사시간에 따른 온도 변화와 살균효과 분석)

  • Seol, Jeong-Hwan;Lee, Jun Jae;Kum, Kee-Yeon;Lee, Jong-Ho;Lim, Young-Joon
    • Journal of Dental Rehabilitation and Applied Science
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    • v.33 no.3
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    • pp.178-188
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    • 2017
  • Purpose: We compared the effects of newly developed diode laser (Bison 808 nm Diode laser) on the treatment of peri-implantitis with conventional products (Picasso 810 nm Diode laser) by comparing the surface temperature of titanium disc and bacterial sterilization according to laser power. Materials and Methods: The titanium disc was irradiated for 60 seconds and 1 - 2.5 W using diode laser 808 nm and 810 nm. The surface temperature of the titanium disc was measured using a temperature measurement module and a temperature measurement program. In addition, in order to investigate the sterilizing effect according to the laser power, 808 nm laser was irradiated after application of bacteria to sandblasted large-grit acid-etched (SLA) and resorbable blast media (RBM) coated titanium discs. The irradiated disks were examined with scanning electron microscopy. Results: Both 808 nm and 810 nm lasers increased disk surface temperature as the power increased. When the 810 nm was irradiated under all conditions, the initial temperature rise rate, the descending rate, and the temperature change before and after was higher than that of 808 nm. Disk surface changes were not observed on both lasers at all conditions. Bacteria were irradiated with 808 nm, and the bactericidal effect was increased as the power increased. Conclusion: When applying these diode lasers to the treatment of peri-implantitis, 808 nm which have a bactericidal effect with less temperature fluctuation in the same power conditions would be considered safer. However, in order to apply a laser treatment in the dental clinical field, various safety and reliability should be secured.

Design and Simulation of an 808 nm InAlAs/AlGaAs GRIN-SCH Quantum Dot Laser Diode

  • Chan, Trevor;Son, Sung-Hun;Kim, Kyoung-Chan;Kim, Tae-Geun
    • Journal of the Optical Society of Korea
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    • v.15 no.2
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    • pp.124-127
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    • 2011
  • Quantum dots were designed within a GRIN-SCH(Graded index - Separate confinement Heterostructure) heterostructure to create a high power InAlAs/AlGaAs laser diode. 808 nm light emission was with a quantum dot composition of In0.665Al0.335As and wetting layer composition of Al0.2Ga0.8As by LASTIP simulation software. Typical characteristics of GRIN structures such as high confinement ratios and Gaussian beam profiles were shown to still apply when quantum dots are used as the active media. With a dot density of 1.0x1011 dots/cm2, two quantum dot layers were found to be good enough for low threshold, high-power laser applications.

In Vitro Effect of 808-nm Diode Laser on Proliferation and Glycosaminoglycan Synthesis of Rabbit Articular Chondrocytes (토끼 관절 연골세포의 증식과 글리코스아미노글리칸 합성에 대한 808-nm 다이오드 레이저의 효능 평가)

  • Minar, Maruf;Hwang, Ya-won;Choi, Seok-hwa;Kim, Gonhyung
    • Journal of Veterinary Clinics
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    • v.32 no.4
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    • pp.295-300
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    • 2015
  • The aim of the study was to assess the in vitro effect of 808-nm InGaAs diode laser on rabbit articular chondrocyte proliferation and sulphated glycosaminoglycan (sGAG) synthesis in alginate bead. Previous studies revealed either positive or negative stimulatory effects of laser on different types of cells. A 808-nm InGaAs diode laser at 1.0W power output was used to irradiate the rabbit chondrocytes in alginate beads with energy densities of $31J/cm^2$ (G 1) and $62J/cm^2$ (G 2) corresponding to the experimental groups for 10 seconds and 20 seconds, respectively at 24, 48, 72 and 96 hours after seeding. Control group was left untreated. MTT assay was performed at 1 week and 2 weeks after the $1^{st}$ laser irradiation in alginate beads. sGAG synthesis in alginate beads at 1 week and 2 weeks were determined by DMMB assay. Histological evaluation for cellular distribution and sGAG deposition around the cells were performed by alcian blue stain. MTT assay revealed no positive stimulatory effect in cell proliferation in alginate bead. DMMB assay results showed significantly increased sGAG production in G 2 chondrocytes at 2 weeks. Image analysis of alcian blue stained slides also showed significantly higher percentage of positive alcian blue stain in G 2 chondrocytes. This result suggests that 808-nm InGaAs diode laser with 1.0 W power output although cannot stimulate cell proliferation it can increase the cell secretion activity and sGAG deposition in alginate beads.

Effect of Photothermal Therapy with Indocyanine Green in Multispecies Biofilm (Indocyanine Green을 이용한 광열 치료의 다종 우식원성 바이오필름에 대한 효과)

  • Kim, Myunghwan;Park, Howon;Lee, Juhyun;Seo, Hyunwoo;Lee, Siyoung
    • Journal of the korean academy of Pediatric Dentistry
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    • v.48 no.1
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    • pp.21-30
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    • 2021
  • The purpose of this study is to investigate the antibacterial effects of indocyanine green (ICG) and near-infrared diode lasers on multispecies biofilms. Multispecies biofilms of Streptococcus mutans, Lactobacillus casei and Candida albicans were treated with different irradiation time using photosensitizer ICG and 808 nm near-infrared diode laser. Colony forming unit (CFU) was measured, and qualitative evaluation of biofilm was performed with confocal laser scanning microscopy (CLSM). Temperature measurement was conducted to evaluate photothermal effect. In the groups using ICG and diode laser, reduction in CFU was statistically significant, but the difference in antibacterial effect on L. casei and C. albicans with irradiation time was not significant, and similar results were confirmed with CLSM. Groups with ICG and diode laser showed higher temperature elevation than groups without ICG, and results of measured temperature were similar to the range of hyperthermia. In conclusion, ICG and near-infrared diode laser showed antibacterial effects on multispecies biofilms, but studies on protocol are necessary for clinical application.

Development of Minimally Invasive Mid-infrared Lipolysis Laser System for Effective Fat Reduction

  • Lee, Ji-Young;Ryu, Han Young;Seo, Young-Seok
    • Medical Lasers
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    • v.10 no.2
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    • pp.82-89
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    • 2021
  • Background and Objectives Due to changes in diet and lifestyle, the number of obese people worldwide is steadily increasing. Obesity has an adverse effect on a healthy life, so it needs treatment and improvement. Research related to this is continuously being conducted. Materials and Methods The laser system to compact designed using 808 nm laser diode and Neodymium Yttrium orthovanadate generates a 1064 nm wavelength, the periodically polarized nonlinear crystal pumping laser beam. The pulsed 1064 nm wavelength beam passing through the AO Q-switch is used as the pumping light of the nonlinear optical crystal and is irradiated to the periodic polarized nonlinear optical crystal with a quasi-phase matching period. Nonlinear optical crystals use an oven to control the temperature to generate the desired 1980 nm and 2300 nm wavelengths. Results The 1980 nm and 2300 nm wavelengths generated by temperature control of nonlinear optical crystals are effective for lipolysis. A fiber catheter was used so that the laser could be directly irradiated to the fat cells. In particular, the new wavelength (1980 nm, 2300 nm) can increase the fat reduction effect with low energy (1.3 W). When a laser with a combination wavelength of 1980 nm and 2300 nm was used, an average lipolysis effect of 20% was obtained. Conclusion A mid-infrared lipolysis laser system with excellent absorption of fat and water has been developed. We conducted a princlinical study to confirm the efficacy and safety of the lipolysis laser system, and obtained good results for lipolysis with low energy.

고출력 808 nm 레이저 다이오드의 구조 최적화 연구

  • Kim, Hui-Dong;Kim, Gyeong-Chan;Chan, Trevor;Jeong, Ho-Yeong;Jeong, Byeong-Seon;Seo, Yu-Jeong;An, Ho-Myeong;Kim, Dong-Ho;Jeong, Gang-Min;Yang, Ji-Won;Kim, Tae-Geun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.11a
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    • pp.201-201
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    • 2009
  • 반도체 레이저 다이오드(laser diode)는 도파로 내부의 굴절률 변화로 발생하는 필라멘테이션(filamentation) 문제와 벽개면 손상으로 인한 catastrophic optical damage(COD) 문제로 고품위/고출력 발진이 제한된다. 양자점 (quantum dot) 레이저 다이오드는 델타 함수 형태의 상태 밀도를 갖기 때문에 이론적으로는 zero 값의 선폭증가요소 특성을 가져 고출력 동작 시 필라멘테이션 문제를 제거할 수 있다. 또한 고출력 동작을 위한 COD 문제는 낮은 광 밀도를 갖는 활성층/도파로 영역의 에피구조 최적화를 통해 해결할 수 있다. 본 논문에서는 고출력 808 nm 양자점 반도체 레이저 다이오드 개발을 위한 에피구조 설계 및 최적화 연구를 수행하였다.

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Optimization of Quantum Dot Structures for High Power 808 run Laser Diode (고출력 808 nm 레이저 다이오드를 위한 양자점 구조 최적화)

  • Son, Sung-Hun;Kim, Kyoung-Chan;Chan, Trevor;Seo, Yu-Jeong;Kim, Tae-Geun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.130-130
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    • 2010
  • 고출력 레이저 다이오드는 광 디스크, 고체 레이저 여기, 광섬유 증폭기, 레이저 프린터, 위성 간 통신 등의 여러분야에 응용되고 있고. 고효율, 저가격, 초소형등과 같은 장점으로 수요가 점점 증가하고 있다. 최근 레이저 다이오드의 광출력 향상 및 열적 안성성를 위해 양자점(Quantum Dot) 응용에 대해 많은 연구가 진행되고 있다. 양자점 기반 레이저 다이오드는 전자가 3차원으로 구속되어 있어 열적 안정성이 우수할 뿐만 아니라 낮은 문턱전류밀도로 인해 열 발생이 적어 광출력 감소 현상을 지연시킬 수 있다. 또한 발광면에서의 재결합 확률이 낮아 표면재결합에 의한 신뢰성 열화 문제를 해결할 수 있어 고신뢰성의 레이저 다이오드를 개발할 수 있다. 고출럭 808 nm 양자점 레이저 다이오드 개발을 위해서는 레이저 다이오드의 활성 영역인 양자점 구조에 대한 연구가 필수적이다. 본 연구에서는 최적화된 고출력 808 nm 양자점 레이저 다이오드 에피 성장을 위해 에피 구조에 대한 2D 시뮬레이션을 수행하였고, 양자점 밀도 및 에피층 변화에 따른 최적 양자점 구조에 대한 연구를 수행하였다.

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Laser Welding of Thermoplastics Using the Absorbing Materials (열가소성 플라스틱의 흡수체를 이용한 레이저 접합)

  • Seo M.H.;Ryu K.H.;Nam G.J.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.430-433
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    • 2005
  • Laser bonding between similar and dissimilar thermoplastics has been investigated by making use of laser transmission weld technique. Spot welding of two layers of plastic materials has been demonstrated by using of a high-quality diode-laser with 808nm wavelength. Weld areas increases according to power density, exposure time. The results of peel out test show that peel strengths increase with the area of molten plastics. Layers, which have the same chemical properties, have good bonding qualities. A bonding method which dye film is coated on the interface is used for laser bonding between plastics with high transmission for laser wavelength. Laser transmission bonding is worthy of attention because it is not in contact, requires a few tooling devices, allows a flexible energy delivery and produces nearly invisible welds

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Study on the laser transmission-welding of thermoplastics (열가소성 플라스틱의 레이저 투과 접합에 환한 연구)

  • Seo Myung-hee;Ryu Kwang-hyun;Nam Gi-jung
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.9 s.174
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    • pp.34-40
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    • 2005
  • Laser welding of thermoplastics is a new jointing technique with a host of advantages. It is not only another extremely useful welding method but also a cost-effective alternative to traditional techniques involving screws or adhesives. Transmission laser-welding of thermoplastics such as polycarbonate(PC), polypropylene(PP), polyvinyl chloride(PVC), low density polyethylene(LDPE) and acrylic using a high power diode laser has been studied experimentally. The optical transmission of each plastic has been measured at laser wavelength of 808nm. The weld process has been characterized by the specific energy and weld time required for each plastic. The characteristics of laser welding between same plastics have also been analyzed.