Alevizakos Vasilios, Mitov Gergo, Schiller Marcus, von See Constantin
Department of Digital Technologies in Dentistry and CAD-CAM Danube Private University Krems an der Donau Austria.
Department of Prosthodontics and Biomaterials Danube Private University Krems an der Donau Austria.
Clin Case Rep. 2021 Mar 20;9(4):2390-2396. doi: 10.1002/ccr3.4046. eCollection 2021 Apr.
Different instrumentation procedures of the alveolar ridge expansion technique (ARST) with or without Guided Bone Regeneration have proven to be effective for successful implant placement in cases of alveolar bone width between 3mm and 6mm. Conventional bone splitting techniques require flap arising. This technical note demonstrates a method for flapless guided bone splitting. For this purpose, a newly developed surgical guide with internal irrigation channels was used. Using CAD-CAM additive technology, a narrow slot along the field of interest and a pin of a cooling pipe was designed and implemented in a surgical guide template. The bone split was performed flapless through the surgical guide while the cooling pipe was connected to it. During surgery, the piezo-driven instrument was moved within that slot, and the irrigation solution was directly rinsing it at point of entry through the irrigation channel. This procedure was performed on a 3.3 mm wide alveolar ridge achieving over 3 mm of bone gain. The described method combines several positive aspects. The micro-invasive flapless surgical procedure might improve postoperative healing. Additionally, sufficient cooling of the bone might lead to less thermal affection of bone cells and less resorption of the cortical bone. However, systematic studies are needed to confirm the observations of the presented case report.
在牙槽骨宽度为3毫米至6毫米的情况下,不同的牙槽嵴扩展技术(ARST)器械操作程序,无论有无引导骨再生,都已被证明对成功植入种植体有效。传统的骨劈开技术需要掀起 flap。本技术说明展示了一种无 flap 引导骨劈开的方法。为此,使用了一种新开发的带有内部冲洗通道的手术导板。利用CAD-CAM增材技术,在手术导板模板中设计并实现了沿感兴趣区域的窄槽和冷却管的销。在连接冷却管的情况下,通过手术导板进行无 flap 的骨劈开。手术过程中,压电驱动器械在该槽内移动,冲洗液通过冲洗通道在进入点直接冲洗。该手术在宽度为3.3毫米的牙槽嵴上进行,实现了超过3毫米的骨增量。所描述的方法结合了几个积极方面。微创无 flap 手术程序可能会改善术后愈合。此外,对骨的充分冷却可能会减少对骨细胞的热影响以及皮质骨的吸收。然而,需要进行系统研究来证实本病例报告的观察结果。 (注:原文中flap未明确具体中文释义,可能是某种口腔手术中的皮瓣等类似结构,这里保留英文未翻译)