Assistant Lecturer, Fixed Prosthodontics Department, Faculty of Dentistry, Mansoura University, Egypt.
Professor, Fixed Prosthodontics Department, Faculty of Dentistry, Mansoura University, Egypt.
Eur J Prosthodont Restor Dent. 2022 Feb 28;30(1):20-35. doi: 10.1922/EJPRD_2244Shams16.
Despite the increased popularity of endocrowns, there is no clear consensus considering their effectiveness to restore severely-destructed endodontically treated premolars. This study aimed to assess the biomechanical behavior of endodontically treated maxillary first premolars restored with a novel endocrown system compared to the conventional one.
Twenty sound human maxillary first premolars were collected. After endodontic treatment, they were divided into 2 groups (n=10) according to the system used for endocrown fabrication. Group C (Control): conventional monolithic IPS e.max CAD endocrowns. Group P: novel bi-layered endocrowns (Pekkton ivory coping veneered with cemented IPS e.max CAD). All specimens were subjected to 10000 thermal cycles followed by 240000 dynamic load cycles. Surviving specimens were subjected to fracture resistance test followed by qualitative analysis using Stereomicroscopy and Scanning Electron Microscopy.
A significantly higher load was observed for Group P (1831.37 ± 240.69 N) than Group C (1433.47 ± 174.39 N) (p ⟨ 0.001). A statistically significant difference was observed considering the failure mode (p = 0.036), with more favorable fractures detected with Group P.
The tested novel endocrown system improved the biomechanical behavior of the tooth/ restoration complex in the restored endodontically treated maxillary first premolars.
The tested novel endocrown system with a PEKK coping veneered with cemented IPS e.max CAD can be considered a promising option for restoration of severely-destructed endodontically treated premolar teeth. It can be considered as a conservative alternative option to the conventional treatment modalities.
尽管嵌体冠的应用日益普及,但对于其修复严重破坏的根管治疗后前磨牙的效果,目前尚无明确共识。本研究旨在评估新型嵌体冠系统修复上颌第一前磨牙的生物力学行为,并与传统嵌体冠系统进行比较。
共收集 20 颗健康的上颌第一前磨牙。根管治疗后,根据嵌体冠制作系统将其分为 2 组(n=10)。C 组(对照组):常规整体式 IPS e.max CAD 嵌体冠。P 组:新型双层嵌体冠(Pekkton 象牙贴面,复合粘接 IPS e.max CAD)。所有样本均进行 10000 次热循环和 240000 次动态负载循环。存活样本进行抗折强度试验,然后使用立体显微镜和扫描电子显微镜进行定性分析。
P 组(1831.37±240.69 N)的负载明显高于 C 组(1433.47±174.39 N)(p ⟨0.001)。考虑到失效模式,差异具有统计学意义(p=0.036),P 组的骨折更有利。
新型嵌体冠系统改善了修复后上颌第一前磨牙的牙/修复体复合体的生物力学性能。
测试的新型嵌体冠系统具有 PEKK 牙冠以复合粘接 IPS e.max CAD,可作为修复严重破坏的根管治疗后前磨牙的有前途的选择。它可以作为传统治疗方法的保守替代方案。