Kotsakis Georgios A, Mazor Ziv
Advanced Education in Periodontology, University of Minnesota, 515 Delaware Street SE, Minneapolis, MN, 55455, USA,
Oral Maxillofac Surg. 2015 Mar;19(1):97-101. doi: 10.1007/s10006-014-0473-2. Epub 2014 Nov 18.
Maxillary sinus augmentation surgery is frequently employed to provide adequate vertical bony dimensions in posterior maxillary sites. When significant gain in bone height is sought for, an invasive lateral-window approach is routinely used to achieve sinus floor elevation. The minimally invasive antral membrane elevation technique was initially conceived as a surgical improvisation that has been shown to lead to up to, or exceeding, 10 mm of bone height, while enhancing the safety profile of the transalveolar sinus augmentation technique. This approach is based on the use of hydraulic pressure that is applied to the schneiderian membrane via a saline-inflatable balloon. Even though this technique has been shown to be a safe and efficacious treatment modality, the need for specialized equipment, training, and corresponding costs may hinder its widespread application. The purpose of this clinical paper is to introduce a simplified approach to the minimally invasive antral membrane elevation technique.
The simplified minimally invasive antral membrane elevation technique is based on the application of hydraulic pressure by a viscous bone graft that acts as an incompressible fluid. The specific clinical steps of this technique will be demonstrated to illustrate how grafting of the maxillary sinus is achieved simultaneously with the atraumatic elevation of the schneiderian membrane, thus resulting in even less operative time.
This simplified technique may make the minimally invasive antral membrane elevation technique more accessible to implant surgeons as it eliminates the need for purchase of specialized equipment and aids in further decrease of intra-operative time accomplished with the original technique.
上颌窦提升手术常用于在上颌后部区域提供足够的垂直骨量。当需要显著增加骨高度时,通常采用侵入性的外侧开窗法来实现窦底提升。微创上颌窦膜提升技术最初是作为一种手术改进方法构思出来的,已被证明可实现高达或超过10毫米的骨高度,同时提高经牙槽嵴上颌窦提升技术的安全性。该方法基于通过盐水可充气球囊向上颌窦膜施加液压。尽管该技术已被证明是一种安全有效的治疗方式,但对专用设备、培训及相应成本的需求可能会阻碍其广泛应用。本临床论文的目的是介绍一种简化的微创上颌窦膜提升技术方法。
简化的微创上颌窦膜提升技术基于由粘性骨移植材料施加液压,该材料起到不可压缩流体的作用。将展示该技术的具体临床步骤,以说明如何在对上颌窦进行植骨的同时对上颌窦膜进行无创提升,从而进一步缩短手术时间。
这种简化技术可能会使微创上颌窦膜提升技术更容易被种植外科医生采用,因为它无需购买专用设备,并有助于进一步缩短原技术的手术时间。