• Title/Summary/Keyword: Soft Laser

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물방울 레이저의 다양한 임상 적용 (Clinical applcation of water laser (Er,Cr:YSGG))

  • 박정현
    • 대한치과의사협회지
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    • 제56권7호
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    • pp.385-390
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    • 2018
  • Laser means "Light amplification by stimulated emission of radiation". Laser have unique characteristics according to wavelength. Wavelenth of Waterlase is 2780nm and it can be absorbed to water and hydroxyapatite. When laser is applied to some material, its temperature goes up due to laser's energy. But in dental treatment high temperature is not good for teeth. High temperature can make dental pulp and bone necrosis. Waterlase can be absorbed to water droplet, so when it burst, it can cut soft and hard tissue without raising temperature. so it is so proper to dental treatment.

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레이저 플라즈마를 이용한 soft X-선 발생 (Generation of soft X-ray using laser-induced plasma)

  • 김광훈;서길수;이홍식;임근희;진윤식
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 C
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    • pp.2095-2097
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    • 2000
  • Applications of soft X-ray which corresponds to the wavelength of the order of 1 nm and to the photon energy of the order of 1 key respectively, requires intense sources. Only synchrotron sources were available recently. The development of a new laboratory-sized source of soft X-ray radiation is required for wide applications. This paper introduces the generation of soft X-ray using laser-induced plasma.

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생체조직내 레이저 광 밀도 향상을 위한 압력 인가형 저출력 레이저 프로브 (A Pressure Applied Low-Level Laser Probe to Enhance Laser Photon Density in Soft Tissue)

  • 여창민;박정환;손태윤;이용흠;정병조
    • 대한의용생체공학회:의공학회지
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    • 제30권1호
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    • pp.18-22
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    • 2009
  • Laser has been widely used in various fields of medicine. Recently, noninvasive low-level laser therapeutic medical devices have been introduced in market. However, low-level laser cannot deliver enough photon density to expect positive therapeutic results in deep tissue layer due to the light scattering property in tissue. In order to overcome the limitation, this study was aimed to develop a negative pressure applied low-level laser probe to optimize laser transmission pattern and therefore, to improve photon density in soft tissue. In order to evaluate the possibility of clinical application of the developed laser probe, ex-vivo experiments were performed with porcine skin samples and laser transmissions were quantitatively measured as a function of tissue compression. The laser probe has an air suction hole to apply negative pressure to skin, a transparent plastic body to observe variations of tissue, and a small metallic optical fiber guide to support the optical fiber when negative pressure was applied. By applying negative pressure to the laser probe, the porcine skin under the metallic optical fiber guide is compressed down and, at the same time, low-level laser is emitted into the skin. Finally, the diffusion images of laser in the sample were acquired by a CCD camera and analyzed. Compared to the peak intensity without the compression, the peak intensity of laser increased about $2{\sim}2.5$ times and FWHM decreased about $1.67{\sim}2.85$ times. In addition, the laser peak intensity was positively and linearly increased as a function of compression. In conclusion, we verified that the developed low-level laser probe can control the photon density in tissue by applying compression, and therefore, its potential for clinical applications.

Conceptual Design of Soft X-ray Microscopy for Live Biological Samples

  • Kim, Kyong-Woo;Nam, Ki-Yong;Kwon, Young-Man;Shim, Seong-Taek;Kim, Kyu-Gyeom;Yoon, Kwon-Ha
    • Journal of the Optical Society of Korea
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    • 제7권4호
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    • pp.230-233
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    • 2003
  • This study describes the conceptual design of a soft x-ray microscope system based on a laserbased source for biomedical application with high resolution (${\leq}$50nm). The laboratory scale soft x-ray microscope consists of high power laser plasma x-ray source and grazing incidence mirrors with high reflectivity. The laser plasma source used for developing this system employs Q-switched Nd-YAG pulsed laser. The laser beam is focused on a tantalum (Ta) target. The Wolter type I mirror was used as condenser optics for sample illumination and as objective mirror for focusing on a detector. The fabrication of the Wolter type I mirror was direct internal cutting using ultraprecision DTM. A hydrated biological specimen was put between the two silicon wafers, the center of which was $Si_3N_4$ windows of 100㎚ thickness. The main issues in the future development work are to make a stable, reliable and reproducible x-ray microscope system.

Peel strength of denture liner to PMMA and polyamide: laser versus air-abrasion

  • Korkmaz, Fatih Mehmet;Bagis, Bora;Ozcan, Mutlu;Durkan, Rukiye;Turgut, Sedanur;Ates, Sabit Melih
    • The Journal of Advanced Prosthodontics
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    • 제5권3호
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    • pp.287-295
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    • 2013
  • PURPOSE. This study investigated the effect of laser parameters and air-abrasion on the peel strength of silicon-based soft denture liner to different denture resins. MATERIALS AND METHODS. Specimens (N=180) were prepared out of three different denture base resins (Rodex, cross-linked denture base acrylic resin; Paladent, heat-cured acrylic resin; Deflex, Polyamide resin) ($75mm{\times}25mm{\times}3mm$). A silicon-based soft denture liner (Molloplast B) was applied to the denture resins after the following conditioning methods: a) Air-abrasion ($50{\mu}m$), b) Er,Cr:YSGG laser (Waterlase MD Turbo, Biolase Technology) at 2 W-20 Hz, c) Er,Cr:YSGG laser at 2 W-30 Hz, d) Er,Cr:YSGG laser at 3 W-20 Hz, e) Er,Cr:YSGG laser at 3 W-30 Hz. Non-conditioned group acted as the control group. Peel test was performed in a universal testing machine. Failure modes were evaluated visually. Data were analyzed using two-way ANOVA and Tukey's test (${\alpha}$=.05). RESULTS. Denture liner tested showed increased peel strength after laser treatment with different parameters ($3.9{\pm}0.4-5.58{\pm}0.6$ MPa) compared to the control ($3.64{\pm}0.5-4.58{\pm}0.5$ MPa) and air-abraded groups ($3.1{\pm}0.6-4.46{\pm}0.3$ MPa), but the results were not statistically significant except for Paladent, with the pretreatment of Er,Cr:YSGG laser at 3 W-20 Hz. Polyamide resin after air-abrasion showed significantly lower peel strength than those of other groups ($3.1{\pm}0.6$ MPa). CONCLUSION. Heat-cured acrylic resin, PMMA, may benefit from Er,Cr:YSGG laser treatment at 3 W-20 Hz irradiation. Air-abrasion of polyamide resins should be avoided not to impair their peel bond strengths to silicon-based soft denture liners.

3차원 레이저 스캔을 이용한 안면 연조직 분석을 위한 계측점의 제안 (A proposal of soft tissue landmarks for craniofacial analysis using three-dimensional laser scan imaging)

  • 백형선;이화진;전재민
    • 대한치과교정학회지
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    • 제36권1호
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    • pp.1-13
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    • 2006
  • 3차원 레이저 스캐너는 두개안면부의 입체적인 영상을 구성할 수 있을 뿐만 아니라 컴퓨터의 조작을 통해 관찰이 용이하도록 원하는 위치로 회전과 축의 조정이 가능하여 면밀한 연조직 분석이 가능하다. 이에 본 연구에서는 Vivid 900 (Minolta, Tokyo, Japan) 3차원 레이저 스캐너와 Rapidform 프로그램 (Inus Technology Inc., Seoul, Korea)을 이용하여 마네킨의 3차원 영상을 채득하여 촬영 과정의 오차를 평가하고 3차원 레이저 스캔 영상의 정밀도 및 확대율을 평가하였으며, 마네킨과 정상교합자, 제II급 부정교합자, 제III급 부정교합자의 3차원 레이저 스캔 영상에서 지정이 용이하고 반복 재현성이 높은 연조직 계측점을 제안하고자 하였다. 마네킨을 6회 반복 촬영한 결과 촬영 과정에서의 평균 오차는 X축은 0.16 mm, Y축은 0.15 mm, Z축은 0.15 mm였다. 마네킨의 실측치와 3차원 스캔 영상에서의 계측치를 비교하여 본 결과, 평균오차 0.37 mm, 확대율 0.66%로 나타났다. 3차원 스캔 영상에서 마네킨의 오른쪽 연조직 gonion을 제외한 26개의 연조직 계측점의 평균 오차가 2.0 mm를 넘지 않았으며 glabella, 연조직 nasion, endocanthion, exocanthionm, pronasale, subnasale, nasal alare, upper lip point, cheilion, lower lip point, 연조직 B point, 연조직 pogonion, 연조직 menton, preaurale 등이 평균 오차가 적었다. 제안된 연조직 계측점들은 3차원 레이저 영상에서 반복 재현성이 높고 지정이 용이하며 안면의 해부학적 특징을 나타내주는 점들로 두개안면 구조의 3차원적인 연조직의 분석을 위해 유용하게 사용될 수 있을 것이다.

Numerical Modeling of Compression-Controlled Low-level Laser Probe for Increasing Photon Density in Soft Tissue

  • Kwon, Ki-Woon;Son, Tae-Yoon;Yeo, Chang-Min;Jung, Byung-Jo
    • Journal of the Optical Society of Korea
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    • 제15권4호
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    • pp.321-328
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    • 2011
  • Various methods have been investigated to increase photon density in soft tissue, an important factor in low-level laser therapy. Previously we developed a compression-controlled low-level laser probe (CCLLP) utilizing mechanical negative compression, and experimentally verified its efficacy. In this study, we used Bezier curves to numerically simulate the skin deformation and photon density variation generated by the CCLLP. In addition, we numerically modeled changes in optical coefficients due to skin deformation using a linearization technique with appropriate parameterization. The simulated results were consistent with both human in vivo and porcine ex vivo experimental results, confirming the efficacy of the CCLLP.

구강내 연조직에 대한 무통적조사를 위한 Nd:YAG laser의 출력조절에 관한 임상적 연구 (A clinical study of the power control of Nd : YAG laser for painless irradiation on intraoral soft tissues)

  • 한상학;김현섭;임기정;김병옥;한경윤
    • Journal of Periodontal and Implant Science
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    • 제26권2호
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    • pp.522-530
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    • 1996
  • Most dentists are very interested in laser therapy on the intraoral soft tissue lesions because they want to accomplish the analgesic and aseptic surgery with little or no bleeding. In order to determine the difference of pain threshold according to different gingival tissues with or without inflammation, 25 patients with inflammatory periodontal disease and 10 volunteers with good general and oral health were selected as the inflamed group and the normal group, respectively. Interdental papilla, marginal gingiva, attached gingiva, and alveolar mucosa were irradiated by the contact delivery($300{\mu]m$ fiber optic, for 5 seconds) of a pulsed Nd:YAG laser(EN.EL.EN06O, Italy). And the laser power was gradually increased from 0.5W by the increment of 0.1W. The highest laser power was recorded as the first painful power when the painful gesture was recognized at first. The difference of the first painful power of laser according to different gingival tissues with or without inflammation was statistically analyzed by paired t-test in MICROSTAT program. Following results were obtained: 1. In the comparison related with the inflammation, the first painful power was significantly lower in the inflamed group than in the normal group, regardless of interdental papilla and marginal gingiva(p<0.05). 2. In the comparison related with the tissue structure, the first painful. power was significantly lower in alveolar mucosa than in attached gingiva(p<0.05). The results suggest that, for the painless therapy by a pulsed-Nd:YAG laser irradiation, the laser surgery over 2.0W of power should be necessarily accomplished under the local anethesia, and the local anesthesia should be considered according to the degree of inflammation, the tissue structure, and the purpose of laser therapy.

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LLC 공진형 컨버터를 사용한 다용도 Nd:YAG 레이저 전원장치 설계 (Research on the Multi - purpose Nd:YAG Laser Power System using LLC Converter)

  • 정도;김희제;이재철;허국성
    • 전기학회논문지
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    • 제64권6호
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    • pp.885-890
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    • 2015
  • LLC resonant converter has been widely used because of its high efficiency and high energy density. In this paper, we designed a LLC resonant converter as the main power supply of the Nd:YAG pulse laser. First harmonic approximation (FHA) is used to model the LLC resonant converter. FHA equivalent circuit model and the transfer function of the LLC resonant converter is proposed. Soft start technology is also used to suppress the surge current. The laser output simulation test result is identical with the practical test, the laser energy of every pulse can reach up to 2.5J, and the pulse per second (PPS) can be adjusted from 6 to 18. The power system is verified stable and reliable by both of the simulation and experiment results.

집속된 광분해 옥소레이저에 의한 플라즈마로부터 방출되는 연속 X-선 스펙트럼 분석과 전자온도 결정 (Analysis of Continuum X-ray Specturum and Determination of Electron Temperature from Iodine Photodissociation Laser produced plasma)

  • 김동환;김남성;이상수
    • 한국광학회:학술대회논문집
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    • 한국광학회 1988년도 광학 및 양자전자학 워크샵
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    • pp.135-144
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    • 1988
  • 1-GW Iodine photodissociation Laser (λ=1.315${\mu}{\textrm}{m}$)is focused to generate the continuum x-ray radiation at titanium(z=22)target. A piced of aluminum(360 )-mylar(8${\mu}{\textrm}{m}$) film is used to isolate the soft X-ray radiation emitted. Convex-xurved mica crystal spectrometer is used to obtain the soft x-ray spectra from the laser titanium target plasma and the slope of continum X-ray spectra are found to show two different different electron effective temperaturres, 0.11keV and 7.1KeV. We compare the two temperature result with the foil absorption method.

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