Dental Biomaterials Research Unit (d-BRU) and Department of Fixed Prosthodontics, University and University Hospital Center (CHU) of Liége, Liège, Belgium.
J Esthet Restor Dent. 2020 Mar;32(2):141-149. doi: 10.1111/jerd.12432. Epub 2018 Oct 27.
To introduce a novel approach for full-mouth rehabilitation of severely worn dentition using polymer-infiltrated ceramic network (PICN) computer-aided-design and manufacturing (CAD-CAM) restorations, without tooth tissue preparation and provisional phase.
Three patients with generalized tooth wear, suffering from dental pain, masticatory dysfunction, bruxism and neck and back pain, were selected and treated in collaboration with physiotherapists. Occlusal analyses were performed and full-mouth diagnostic wax-ups were designed on the basis of estimated tissue loss. Deficient direct restorations were replaced and low-thickness PICN (Vita Enamic) restorations (up to 0.2 mm) were CAD-CAM designed from wax-ups, milled, tried-in and then bonded within two consecutive days. To mask palatal veneers, either buccal direct composites or glass-ceramic veneers were later performed. An occlusal splint was realized. Clinical results were shown to be successful after a follow-up of 22, 18, and 13 months, respectively. The absence of provisional phase did not engender any inconveniences. Patient reported outcomes were very positive, showing a reduction in neck and back pain and a well-being increase.
The proposed protocol is particularly minimally invasive and straightforward compared to classical techniques. PICNs exhibit several advantages compared to other materials. Preliminary results of this multidisciplinary approach are promising but deserve further clinical research.
The development of CAD-CAM technologies offers the possibility of improving treatment of severe worn dentition, reducing chairtime and need of tooth tissue preparation, and introducing a new class of composite materials (hybrid ceramics), which exhibit interesting properties for this indication. The influence of the proposed multidisciplinary approach, particularly the collaboration with physiotherapists, needs to be further explored with respect to treatment of associated symptoms, such as masticatory muscles hypertrophy and neck pain.
介绍一种使用聚合物渗透陶瓷网络(PICN)计算机辅助设计和制造(CAD-CAM)修复体进行全口严重磨损牙列修复的新方法,无需牙体预备和临时阶段。
选择了 3 名患有广泛性牙齿磨损、牙齿疼痛、咀嚼功能障碍、磨牙症和颈背痛的患者,并与物理治疗师合作进行治疗。进行了咬合分析,并根据估计的组织损失设计了全口诊断性蜡型。更换有缺陷的直接修复体,并从蜡型 CAD-CAM 设计低厚度 PICN(Vita Enamic)修复体(可达 0.2mm),然后铣削、试戴,最后在连续两天内粘结。为了掩饰腭侧贴面,可以使用颊侧直接复合树脂或玻璃陶瓷贴面。还制作了一个咬合夹板。在分别随访 22、18 和 13 个月后,临床结果显示成功。由于没有临时阶段,因此没有带来任何不便。患者报告的结果非常积极,显示颈背痛减轻,幸福感增加。
与传统技术相比,该方案特别微创和简单。与其他材料相比,PICNs 具有许多优势。这种多学科方法的初步结果很有希望,但需要进一步的临床研究。
CAD-CAM 技术的发展为治疗严重磨损牙列提供了可能,减少了椅旁时间和牙体预备的需求,并引入了一类新的复合材料(混合陶瓷),这些材料在该适应症方面具有有趣的特性。需要进一步探讨所提出的多学科方法的影响,特别是与物理治疗师的合作,以探讨其对相关症状(如咀嚼肌肥大和颈痛)的治疗效果。