Winnen Rolf G, Kniha Kristian, Modabber Ali, Al-Sibai Faruk, Braun Andreas, Kneer Reinhold, Hölzle Frank
Private Practice, 40217 Düsseldorf, Germany.
Department of Oral and Maxillofacial Surgery, RWTH Aachen University Hospital, 52074 Aachen, Germany.
Materials (Basel). 2021 Dec 17;14(24):7829. doi: 10.3390/ma14247829.
Osseointegration is the basis of successful dental implantology and the foundation of cementless arthroplasty and the osseointegrated percutaneous prosthetic system. Osseointegration has been considered irreversible thus far. However, controlled heating or cooling of dental implants could selectively damage the bone at the bone-implant interface, causing the reversal of osseointegration or "osseodisintegration". This review compares five methods for implant removal, published as patent documents between 2010 and 2018, which have not yet been discussed in the scientific literature. We describe these methods and evaluate their potential for reversing osseointegration. The five methods have several technical and methodological similarities: all methods include a handpiece, a connecting device for coronal access, and a controlling device, as well as the application of mechanical and/or thermal energy. The proposed method of quantifying the temperature with a sensor as the sole means for regulating the process seems inadequate. A database used in one of the methods, however, allows a more precise correlation between a selected implant and the energy needed for its removal, thus avoiding unnecessary trauma to the patient. A flapless, microinvasive, and bone-conserving approach for removing failed dental implants, facilitating successful reimplantation, would benefit dental implantology. These methods could be adapted to cementless medical implants and osseointegrated percutaneous prosthetics. However, for some of the methods discussed herein, further research may be necessary.
骨结合是成功的牙种植学的基础,也是非骨水泥关节置换术和骨结合经皮修复系统的基础。迄今为止,骨结合一直被认为是不可逆的。然而,对牙种植体进行控制性加热或冷却可选择性地损伤种植体与骨界面处的骨组织,导致骨结合逆转或“骨脱结合”。本综述比较了2010年至2018年间作为专利文件发表的五种种植体取出方法,这些方法在科学文献中尚未被讨论。我们描述了这些方法,并评估了它们逆转骨结合的潜力。这五种方法在技术和方法上有几个相似之处:所有方法都包括一个机头、一个用于冠部入路的连接装置、一个控制装置,以及机械能和/或热能的应用。所提出的以传感器量化温度作为调节过程的唯一手段的方法似乎并不充分。然而,其中一种方法中使用的数据库允许在选定的种植体与其取出所需能量之间建立更精确的关联,从而避免对患者造成不必要的创伤。一种用于取出失败牙种植体的无瓣、微创且保留骨组织的方法,有助于成功再植入,将有利于牙种植学。这些方法可适用于非骨水泥医用植入物和骨结合经皮修复假体。然而,对于本文讨论的一些方法,可能需要进一步研究。