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Soft Tissue Applications of ErCr:YSGG Laser in Pediatric Dentistry

机译:ErCr:YSGG激光在小儿牙科中的软组织应用

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摘要

Soft tissue laser, such as diode and Nd:YAG lasers were initially used in soft tissue lesions because of its increased success rate. It was because of the fact that these lasers were well-absorbed by chromophores, such as hemoglobin and melanin which are found abundant in the oral mucosa. The introduction of erbium family in 1990 comprising the Er:YAG and Er,Cr:YSGG lasers made the hard tissue laser a boon for dentistry. Erbium, chromium-doped yttrium, scandium, gallium and garnet (Er,Cr:YSGG) was introduced in 1997 for the surgical needs of clinical dentistry in general practice. The erbium belongs to the rare earth which is embedded in a host crystal. The actual lasing process takes place in the Er ion Er3+. Two host crystals consisting of yttrium, aluminum, and garnet (Y3A5O12) and yttrium, scandium, gallium, and garnet (Y3Sc2Ga3O12) are added to the erbium. The interest to use these hard tissue laser in the treatment of soft tissue lesion was because of the properties of these lasers which are well-absorbed by chromophore water apart from hydroxy appetite crystals. Erbium laser energy is absorbed by collagen, hydroxyapatite, and water components. It allows the laser to cut soft tissue, tooth structure, and bone. In the noncontact mode, the incision is scalpel-like, with very little hemostasis. In contact mode, it performs soft tissue sculpting with adequate hemostasis. The Er,Cr:YSGG is the world’s most advanced dental laser, which is ideal all-tissue laser because all dental tissues contain water, for the multidisciplinary dentist who performs a broad spectrum of procedures. It delivers the highest level of clinician control, operating efficiency, flexibility in tip, and accessory selection. For optimal clinical results and patient comfort in hard and soft tissue procedures, the erbium lasers have set a new standard of clinical performance. The present case series aims to highlight the various soft tissue applications of Er,Cr:YSGG (Waterlase Biolase®, Biolase, Inc, San Clemente, California, USA) in pediatric patients.How to cite this articleKumar G, Rehman F, Chaturvedy V. Soft Tissue Applications of Er,Cr:YSGG Laser in Pediatric Dentistry. Int J Clin Pediatr Dent 2017;10(2):188-192.
机译:软组织激光器,例如二极管和Nd:YAG激光器,由于其成功率提高而最初用于软组织病变。因为这些激光被发色团很好地吸收,例如在口腔粘膜中大量存在的生色团,例如血红蛋白和黑色素。 1990年引入的包括Er:YAG和Er,Cr:YSGG激光的family族使硬组织激光成为牙科的福音。 general,铬掺杂的钇,scan,镓和石榴石(Er,Cr:YSGG)于1997年引入,用于一般实践中临床牙科的外科手术需求。 belongs属于嵌入在主体晶体中的稀土。实际的激射过程发生在Erion Er 3 + 中。将由钇,铝和石榴石(Y3A5O12)和钇,scan,镓和石榴石(Y3Sc2Ga3O12)组成的两个主体晶体添加到the中。使用这些硬组织激光治疗软组织病变的兴趣在于,由于这些激光的性质被生色团水很好吸收,除了羟基食欲晶体外。 collagen激光能量被胶原蛋白,羟磷灰石和水成分吸收。它允许激光切割软组织,牙齿结构和骨骼。在非接触模式下,切口为手术刀状,止血很少。在接触模式下,它可以进行软组织雕刻并具有足够的止血效果。 Er,Cr:YSGG是世界上最先进的牙科激光仪,是理想的全组织激光仪,因为所有牙科组织都含水,对于执行多种手术的多学科牙医而言,这是非常理想的。它提供了最高水平的临床医生控制,操作效率,尖端的灵活性和附件选择。为了在硬组织和软组织过程中获得最佳的临床效果和患者的舒适度,the激光器已经设定了新的临床性能标准。本病例系列旨在突出Er,Cr:YSGG(WaterlaseBiolase®,Biolase,Inc,San Clemente,California,USA)在儿科患者中的各种软组织应用。 。Er,Cr:YSGG激光在小儿牙科中的软组织应用。 Int J临床小儿外科杂志2017; 10(2):188-192。

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