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用于牙髓病治疗的专利蜂窝状尖端所产生的激光诱导搅动与空化作用。

Laser-induced agitation and cavitation from proprietary honeycomb tips for endodontic applications.

作者信息

George Roy, Chan Keith, Walsh Laurence James

机构信息

School of Dentistry and Oral Health, Griffith University, Gold Coast, Australia,

出版信息

Lasers Med Sci. 2015 May;30(4):1203-8. doi: 10.1007/s10103-014-1539-y. Epub 2014 Mar 20.

Abstract

Cavitation and agitation generated by lasers in fluid-filled root canals create fluid movement and shear stresses along the root canals walls, enhancing removal of the smear layer and biofilm. When used with sodium hypochlorite and EDTA, laser activation of aqueous fluids can increase the efficiency of debridement and disinfection of root canals. However, the use of forward-firing laser fibers with such solutions poses a risk of driving fluid past the root apex, which could cause postoperative complications. The purpose of this study was to evaluate the mechanism of fluid agitation caused by a novel honeycomb tip. Glass capillary tubes filled with distilled water were used to replicate single-tooth root canals. A 980 nm pulsed diode laser was used with 200 μm diameter plain tips, tube-etched conical tips, and honeycomb tips. To record fluid movements, the tubes were backlit and imaged using a digital camera attached to a microscope. The honeycomb tips generated agitation with fluid movement directed onto the walls, while both the conventional plain fibers and the conical tips created fluid movement largely in a forward direction. The use of honeycomb tips alters the pattern of fluid agitation, and this laterally directed effect might lower the risk of fluid extrusion beyond the apex.

摘要

激光在充满液体的根管中产生的空化和搅动会沿根管壁产生液体流动和剪切应力,从而增强对玷污层和生物膜的清除。当与次氯酸钠和乙二胺四乙酸(EDTA)联合使用时,激光激活水性液体可提高根管清创和消毒的效率。然而,将前向发射激光光纤与这些溶液一起使用存在使液体越过根尖的风险,这可能会导致术后并发症。本研究的目的是评估一种新型蜂窝状尖端引起液体搅动的机制。使用填充蒸馏水的玻璃毛细管来模拟单根管。使用波长为980 nm的脉冲二极管激光,搭配直径为200μm的普通尖端、经管蚀刻的锥形尖端和蜂窝状尖端。为记录液体流动,将毛细管进行逆光照明,并使用连接到显微镜的数码相机进行成像。蜂窝状尖端产生的搅动使液体流向管壁,而传统的普通光纤和锥形尖端产生的液体流动主要是向前的。使用蜂窝状尖端会改变液体搅动的模式,这种侧向作用可能会降低液体挤出根尖的风险。

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