• Title/Summary/Keyword: Soft Laser

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Lip and perioral soft tissue changes after bracket bonding using 3-D laser scanner (브라켓의 접착 전후 입술 주위 연조직의 3차원적 변화)

  • Lee, Won-Je;Lee, Kee-Joon;Yu, Hyung-Seog;Baik, Hyoung-Seon
    • The korean journal of orthodontics
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    • v.41 no.6
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    • pp.411-422
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    • 2011
  • Objective: The aim of this study was to evaluate the lip and perioral soft tissue changes after bracket bonding. Methods: The soft tissue changes in 45 adult patients (age greater than 18 years and less than 29 years) without severe skeletal discrepancy were evaluated using three-dimensional images acquired with a laser scanner before and after bracket bonding was performed using 4 types of labial orthodontic brackets. Results: Among the statistically significant changes in distance observed for the landmarks, the biggest change was observed in forward movement. The landmarks on the lateral sides also showed significant changes. While the landmarks on the upper lip showed significant upward movement, those on the lower lip showed significant downward movement. However, the changes were smaller for the landmarks on the upper lip (average, 0.87 mm) than for the landmarks on the lower lip (average, 1.21 mm). The type of bracket used did not significantly affect the soft tissue changes. Conclusions: These findings will help predict soft tissue changes after bracket bonding for orthodontic treatment.

Spectra of Optical-field Ionized Gases by a Femtosecond Ti:Sapphire Laser

  • Mock, Tomas;Shin, Hyun-Joon;Cha, Yong-Ho;Lee, Dong-Gun;Hong, Kyung-Han;Nam, Chang-Hee
    • Journal of the Optical Society of Korea
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    • v.2 no.2
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    • pp.50-53
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    • 1998
  • We report on the spectroscopic investigation of optical-field ionized plasmas in the soft X-ray spectral region. The experiment was carried out by focusing pulses of the high-power Ti:Sapphire laser with an energy of ~ 40 mJ and time duration of ~30 fs into a gas jet of krypton, xenon, and argon from a pulsed nozzle. Strong soft X-ray emission on lines from ionic stages of $Kr^{7+} , Kr^{8+} , Xe^{7+} , Ar^{7+} , and Ar^{8+}$ is reported. The experimental result was found to be in good agreement with theoretical prediction.

Particle Acceleration via Laser Ablation

  • Choi, Ji-Hee;Yoh, Jai-Ick
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2008.03a
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    • pp.566-569
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    • 2008
  • Recently, the biolistic process is emerging as an effective needle-free drug delivery technique to transfer adequate concentrations of pharmacologic agents to soft living tissues with minimum side effects. We have started developing an effective method for delivering drug coated particles using laser ablation. A thin metal foil with deposited micro-particles on one side is irradiated with laser beam on the opposite side so that a shock wave is generated. This shock wave travels through the foil and is reflected, which causes and instantaneous deformation of the foil. Due to such a sudden deformation, the micro-particles are ejected at a very high speed. Here we present the experimental results of direct and confined laser ablation, which correspond to the initial stage of the whole experiment.

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$CO_2$Laser Aryepiglottoplasty for Treatment of Laryngomalacia in Patau Syndrome (PATAU 증후군에 동반된 후두연화증의 $CO_2$LASER를 이용한 수술치험례)

  • 송영호;이동엽;안회영;김영도
    • Korean Journal of Bronchoesophagology
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    • v.3 no.1
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    • pp.128-136
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    • 1997
  • Laryngomalacia is the most common cause of stridor in infant. It is a relatively benign self-limiting condition, but in severe cases, it results in obstructive sleep apnea, cor pulmonale , gastroesophageal reflux, failre to thrive, pectus excavatum, respiratory failure and death. When the airway obstruction related to laryngomalacia becomes significant, surgical correction of the underlying laryngeal deformity is indicated. Numerous reports provide evidence to support the trimming supraglottic soft tissue by using either conventional instruments or the surgical laser for treatment of severe laryngomalacia. Recently, authors experienced a case of laryngomalacia with Trisomy 13 (Patau syndrome) which had three times respiratory arrest and was treated with laser aryepiglottoplasty. We report this case with review of the literatures.

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CLINICAL APPLICATION OF ARGON LASER IN PEDIATRIC DENTISTRY (아르곤 레이저의 소아치과에서의 임상적 적용)

  • Lee, Mi-Na;Lee, Sang-Hoon;Kim, Chong-Chul
    • Journal of the korean academy of Pediatric Dentistry
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    • v.24 no.1
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    • pp.139-147
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    • 1997
  • Argon laser used in this case report, is special in having two wavelength of 488, 514nm blue-green visible light spectrum. Blue light is used for composite resin polymerization and caries detection. Green light is used for soft tissue surgery and coagulation. Maximum absorption of this laser light occurs in red pigmentation such as hemoglobin. The argon laser may be well-suited for selective destruction of blood clots and hemangioma with minimal damage to adjacent tissues. Argon laser light penetrates tissue to the 1 mm depth, so its thermal intensity is lower than $CO_2$ laser light. Also, due to its short wavelength it can be focused in a small spot and even single gene can be excised by this laser and microscopy. After applicating argon laser to 4 patient for surgical procedure and to 1 patient for curing the composite resin, following results were obtained. 1. Improved visibility were gained due to hemostasis and no specific technique were needed according to easy recontouring of the tissue. 2. Ability to use by contact mode, tactile sense was superior but tissue dragability and accumulation of tissue on the tip needed sweeping motion. 3. Additive local anesthetic procedure was needed. 4. No suture and less curing time reduced chair time, this made argon laser available in pediatric dentistry.

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SOFT TISSUE RESPONSE TO THE PULSED Nd : YAG LASED DENTAL IMPLANTS IN THE RABBIT ABDOMINAL WALL (Pulsed Nd : YAG 레이저를 조사한 임플란트를 가토복강내에 이식시 주위조직에 미치는 영향)

  • Jun, Joong-Hyun;Lee, Ho-Yong
    • The Journal of Korean Academy of Prosthodontics
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    • v.34 no.4
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    • pp.800-815
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    • 1996
  • Pulsed Nd : YAG laser has been used to treat various soft tissue lesions. However, there have been warnings of using laser to treat peri-implantitis because the laser can alter the surface of implant and can rise its temperature so that it might be harmful to implant itself and its surrounding tissue. However, the study in vivo has not been done yet. The purpose of this study was to evaluate the biocompatibility to the pulsed Nd:YAG lased dental implant. 16 HA coated implants and 16 titanium plasma sprayed implants were used. They were divided 4 groups as unlased control, 0.3 watt, 1.0 watt and 2.0 watt lased groups after lasing. And they were implanted in the peritonial walls of 12 rabbits. The rabbits were sacrificed 6 weeks after implantation and the LM and EM specimems were made. 1. In the unlased implant group, both HA coated and titanium plasma sprayed implants were surrounded by fibroblasts and collagen fibers. No macrophages and inflammatory cells were seen. 2. In HA coated implants 0.3 watt, 1.0 watt lased group had a little inflammation, but in 2.0 watt lased group had scattered macrophages, a significantly larger number of chronic imflammatory cells were seen. 3. In titanium plasma sprayed implant 0.3 watt, 1.0 watt lased group had a little inflammation, but in 2.0 watt group had severe inflammation as in the conditions of HA coated group. 4. The inflammatory reaction of both lased HA coated and titanium plasma sprayed implant groups increased as the increase of the power of the laser.

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Soft X-ray emission from Ar clusters irradiated by an intense femtosecond laser (강한 펨토초 레이저에 의해 아르곤 송이에서 발생한 연엑스선)

  • ;T. Mocek
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.02a
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    • pp.22-23
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    • 2000
  • 강한 레이저 펄스에 의해 만들어진 플라즈마를 사용하여 연엑스선(soft X-ray, 10-300 $\AA$) 광원을 얻으려는 노력은 주로 고체나 기체 표적에 대한 것이었다. 최근에 이르러 기체의 단열 팽창에서 생기는 원자 송이(atomic cluster)를 표적으로 하는 연구 결과들이 발표되었다. $^{(1).(2)}$ 원자 송이는 국소적으로는 고체에 가까운 밀도를 가지고 있어서 효율적으로 레이저 에너지를 흡수하는 반면, 전체적으로는 기체 상태에 있기 때문에 파편이 적고, 기체의 압력과 온도를 변화시킴으로써 송이의 크기를 조절할 수 있다. (중략)

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Treatment of Gingival Irritation Fibroma Using $CO_2$ Laser (이산화탄소 레이저($CO_2$ laser)를 이용한 치은에 발생한 자극성 섬유종의 치료)

  • Choi, Young-Chan;Park, Ju-Hyun;Ahn, Hyung-Joon
    • Journal of Oral Medicine and Pain
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    • v.35 no.2
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    • pp.119-122
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    • 2010
  • Carbondioxide($CO_2$) laser is one of the most widely employed lasers in oral soft tissue surgery because of its excellent affinity for water based soft tissues. It has some inherent advantages such as hemostasis, less postoperative swelling, reduction of bacterial population at surgical site, less need for suturing, less scarring, and less postoperative pain compared to conventional surgical therapies including the use of scalpel, diathermy, cryotherapy and electrosurgery. A 30-years-old male was presented with gingival swelling. Clinical examination revealed a well?defined pedunculated fibrotic mass on the buccal gingiva near right maxillary 1st molar. In radiographic examination, no remarkable abnormality was seen. Excisional biopsy was performed with $CO_2$ laser (continuous wave mode, 4.0W). Histological diagnosis was "Irritation fibroma". $CO_2$ laser has advantages those are suitable for surgical treatment of intraoral lesion. If appropriate training and experience are provided, the dentist would be able to manage intraoral lesions more efficiently and successfully with the use of the $CO_2$ laser.