Charavet Carole, Lambert France, Lecloux Geoffrey, Le Gall Michel
Département d'Orthodontie et d'Orthopédie Dento-Faciale, Hôpital Universitaire de Liège, Dental Biomaterials Research Unit, Université de Liège, Belgique.
Département de Parodontologie et Chirurgie Buccale, Hôpital Universitaire de Liège, Dental Biomaterials Research Unit, Université de Liège, Belgique.
Orthod Fr. 2019 Mar;90(1):5-12. doi: 10.1051/orthodfr/2019002. Epub 2019 Apr 17.
The duration of orthodontic treatment in adults remains a barrier for some patients. Some surgical techniques have been developed in order to accelerate orthodontic tooth movement. The technique of corticotomies is effective in decreasing the orthodontic treatment time but remains invasive, leading to significant postoperative consequences.
Minimally invasive techniques without muco-periosteal flap elevation have been developed: corticision, micro-osteoperforations, piezopuncture and piezocision.
The piezocision procedure seems to be the best compromise to accelerate orthodontic tooth movement while respecting a specific surgical and orthodontic protocol. The piezocision surgery allows the addition of biomaterials in cases of dehiscence and/or fenestration on the alveolar bone associated with moderate to severe overcrowding.
According to current publications, minimally invasive corticotomy techniques can be viewed as a new therapeutic tool in the acceleration of orthodontic tooth movement.
成人正畸治疗的疗程对一些患者来说仍然是一个障碍。为了加速正畸牙齿移动,已经开发了一些外科技术。皮质切开术技术在缩短正畸治疗时间方面是有效的,但仍然具有侵入性,会导致明显的术后后果。
已经开发出了不掀起粘骨膜瓣的微创技术:皮质切开、微骨穿孔、压电穿刺和压电切开。
压电切开术似乎是在遵循特定外科和正畸方案的同时加速正畸牙齿移动的最佳折衷方法。压电切开手术允许在与中度至重度牙列拥挤相关的牙槽骨出现骨裂和/或骨开窗的情况下添加生物材料。
根据目前的出版物,微创皮质切开术技术可被视为加速正畸牙齿移动的一种新的治疗工具。