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Oral Applications of Ultra-Short Laser Pulses - a New Approach for Gentle and Painless Treatment?

机译:超短激光脉冲的口服应用 - 一种温和无痛治疗的新方法?

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In dental hard tissue ablation, ultra-short laser pulses have proven sufficiently their potential for material ablation with negligible collateral damage providing many advantages. The absence of microcracks and the possibility to avoid overheating of the pulp during dental cavity preparation may be among the most important issues, the latter opening up an avenue for potential painless treatment. Beside the evident short interaction time of laser radiation with the irradiated tissue, scanning of the ultra-short pulse trains turned out to be crucial for ablating cavities of required quality and shape. Additionally, such a technique allows to treat larger areas like the ones dentists are used to work with, i.e. ~ 1 mm Φ. In this paper, an overview of different scanning methods together with the algorithms used and an assessment of their applicability is presented. A variety of pulse durations from ~ 100 fs up to several ps has been used by numerous authors over the last approximately ten years. Having employed 330 fs pulses, we present the corresponding ablation thresholds for dental hard tissue (enamel, dentine; human and bovine), for a number of dental restoration materials, as well as for different types of bovine bone. Dental implants frequently have to be cleaned from plaque being deposited around their necks in areas where the gums have already retreated. A preliminary investigation is presented on the applicability of ultra-short pulses with mentioned duration for the gentle cleaning of titanium implants focusing on the preservation of the special plasma-sprayed biocompatible implant surface.
机译:在牙科硬组织消融中,超短的激光脉冲已经证明了它们对材料消融的潜力,其具有可忽略不计的侧支损伤,提供了许多优点。在牙腔准备期间没有微裂纹和避免纸浆过热的可能性可能是最重要的问题中,后者开放了潜在无痛治疗的途径。除了用辐照组织的激光辐射的明显短相互作用时,扫描超短脉冲列车对于所需质量和形状的烧蚀空腔是至关重要的。另外,这种技术允许治疗牙医使用的较大区域,即用于与之合作,即〜1mmφ。本文介绍了不同扫描方法与所使用的算法以及对其适用性的评估的概述。许多作者在过去约十年中,许多作者使用了来自〜100 fs的各种脉冲持续时间。雇用了330个FS脉冲,我们向牙科硬组织(牙釉质,牙本质;人和牛)提供了相应的消融阈值,用于许多牙科修复材料,以及不同类型的牛骨。牙科植入物通常必须从胶片沉积在牙龈已经退缩的区域沉积的斑块中。提出了一种初步调查,提到了超短脉冲的适用性,提到的钛植入物的温和清洁专注于保护特殊等离子体喷涂的生物相容性植入物表面的持续时间。

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