Degidi Marco, Gehrke Peter, Spanel Andre, Piattelli Adriano
University of Chieti, Pescara, Italy.
Clin Implant Dent Relat Res. 2006;8(3):123-34. doi: 10.1111/j.1708-8208.2006.00011.x.
Rigid temporization has been recognized to have a significant impact on the peri-implant tissue response in immediate implant loading since it reduces the mechanical stress exerted on each implant.
A successful protocol for immediate loading of multiple implants depends on an adequate fixation and immobility of the implants to prevent the risk of micromovements in relation to the surrounding bone. The objective of this article was to evaluate a prosthetic concept for an accelerated rigid splinting of multiple implants for same-day immediate loading with metal-reinforced provisional restorations using a technique of welding temporary implant abutments with a prefabricated titanium bar directly in the oral cavity (syncrystallization).
Between June 2004 and January 2005, immediate loading of threaded implants with a metal- reinforced acrylic resin provisional restoration at stage 1 surgery was evaluated in 40 consecutive patients. A total of 192 implants were placed in selected edentulous or partially edentulous patients using the syncrystallization technique. Once the titanium bar was welded intraorally to the abutments, opaque was applied and the provisional restoration was relined and screw-retained the same day. In addition, a comparison of deformations and stress distributions in implant-supported, metal-reinforced and nonmetal-reinforced resin provisional restorations was analyzed in the edentulous mandible by a three-dimensional finite element model (FEM).
All of the 192 rigidly temporized immediately loaded implants osseointegrated. An implant success rate of 100% was achieved over a period of 6 months postplacement. No fracture or luting cement failure of the provisional restoration occurred during the observation time. Compared to mere acrylic superstructures, a significant reduction of deformation and strain within metal-reinforced provisional restorations was detected by FEM analysis.
The results of this study indicate that the syncrystallization technique allows an expedite and adequate rigid splinting of multiple immediately loaded implants. The advantages of the technique are: (1) reduction of treatment time for immediate temporization at stage 1 surgery; (2) predictable fixation and immobility of implants in the early stages of bone healing; and (3) less time for repairing provisional restorations as a result of no or rare fracture.
刚性临时修复已被认为对即刻种植体加载时的种植体周围组织反应有重大影响,因为它减少了施加在每个种植体上的机械应力。
多个种植体即刻加载的成功方案取决于种植体的充分固定和不动,以防止与周围骨相关的微动风险。本文的目的是评估一种修复概念,即使用在口腔内直接将临时种植体基台与预制钛棒焊接的技术(同步结晶),对多个种植体进行加速刚性夹板固定,以便使用金属增强的临时修复体进行当日即刻加载。
在2004年6月至2005年1月期间,对40例连续患者在一期手术时使用金属增强丙烯酸树脂临时修复体对螺纹种植体进行即刻加载进行了评估。使用同步结晶技术,在选定的无牙或部分无牙患者中总共植入了192颗种植体。一旦钛棒在口腔内焊接到基台上,就进行遮色处理,并在同一天对临时修复体进行重衬和螺丝固位。此外,通过三维有限元模型(FEM)分析了在下颌无牙区种植体支持的、金属增强和非金属增强树脂临时修复体的变形和应力分布。
所有192颗即刻加载并进行刚性临时修复的种植体均实现骨结合。在种植后6个月期间,种植成功率达到100%。在观察期内,临时修复体未发生骨折或粘结剂失败。通过有限元分析发现,与单纯的丙烯酸超结构相比,金属增强临时修复体内的变形和应变显著降低。
本研究结果表明,同步结晶技术能够对多个即刻加载的种植体进行快速且充分的刚性夹板固定。该技术的优点包括:(1)减少一期手术时即刻临时修复的治疗时间;(2)在骨愈合早期种植体固定和不动的可预测性;(3)由于无骨折或极少骨折,修复临时修复体的时间减少。