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Endodontic plasma-jets for root-canal disinfection

机译:根管等离子喷嘴用于根管消毒

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Summary form only given. A plasma treatment for root-canal disinfection is expected to be substituted for the traditional methods for which some toxic antibacterial compounds such as sodium hypochlorite (NaOCl), chlor-hexidine (CHX), and others have been used with a tool of endodontic file (NiTi). Sometimes the toxic compound brings about the serious side-effects as a dropsical swelling around the root of a tooth, a massive swelling of the check, and an ecchymosis and a bruise on the side of face. A high attention should be paid to the perform irrigation as well as to apply a medicament for such a narrow, deep, and irregular-shaped root canals. Atmospheric pressure plasma jet possibly generates lots of reactive species comparable to conventional chemicals. Furthermore the treatment area can be focused narrowly and deeply without making sever toxic residues. For the last decade, a lot of jet-devices have been introduced and there have been some preliminary attempts to use a plasma-jet in endodontic practice but the completely sterilized results have not been reported yet.The purpose of this research is to develop an efficient device of a plasma jet system for dental surgery. We introduce a new concept of the jet-system combined with a dielectric barrier discharge, whose properties are as follows: (i) An Ar-jet device is operated by a remarkably low voltage with a sinusoidal frequency of several tens of kHz. Even in an air-jet device, the same electrode structure has been involved as that of an Ar-jet. (ii) To overcome the difficulty of approaching the deep and narrow irregular-cavity of rootcanal, a reliable and user-friendly plasma-jet device is needed. Our system is equipped with a proper structure of a hooked nozzle through which the plasma can be generated inside the canal. To prevent the infection during the operation, a disposable single-usage of the nozzle system is developed. (iii) Optical spectrum is analyzed to compare this jet-system to the conventional jets and to verify the effective radicals in killing bacteria. And finally, a bactericidal effect of this plasma jet on the Streptococcus mutants and Enterococcus faecalis as main pathogens in a root-canal is investigated in variously-designed 3-dimensional tooth model made by 3D printer or in extracted tooth.
机译:摘要表格仅给出。预期对根管消毒的等离子体处理被取代用于一种传统方法,其中一些有毒抗菌化合物如次氯酸钠(NaOCl),氯 - 己酮(CHX),以及其他有毒的抑制剂(Chl- Hexidine)和其他物品已被用于胸膜内锉刀( niti)。有时毒性化合物会带来严重的副作用作为牙齿根部的滴落肿胀,检查肿胀,脸部侧面肿胀和瘀伤和瘀伤。应高度重视执行灌溉,并为这种狭窄,深,不规则的根管施加药物。大气压等离子体喷射可能产生与常规化学品相当的许多反应性物质。此外,治疗区域可以狭窄,深刻地聚焦,而不会产生切断有毒残留物。在过去的十年中,已经介绍了许多喷射装置,并且已经有一些初步尝试在牙髓实践中使用等离子体喷射,但尚未报告完全灭菌的结果。本研究的目的是开发牙科手术等离子体喷射系统的高效装置。我们介绍了喷气系统的新概念,与介电阻挡放电结合,其性质如下:(i)通过具有几十kHz的正弦频率的非常低的电压来操作AR射流装置。即使在空气喷射装置中,也是相同的电极结构作为AR射流的情况。 (ii)克服难以接近根部和窄的根腔的难度,需要可靠和用户友好的等离子体喷射装置。我们的系统配备有钩状喷嘴的适当结构,通过该钩状喷嘴,等离子体可以在运河内产生等离子体。为了防止在操作期间感染,开发了喷嘴系统的一次性单一使用。 (iii)分析光谱以将该喷射系统与传统喷射器进行比较,并验证杀死细菌中的有效基准。最后,以3D打印机或提取的齿制成的不同设计的三维齿模型,研究了这种等离子体射流作为根管中的主要病原体的杀菌效果作为根管中的主要病原体。

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