首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Concepts for Designing and Fabricating Metal Implant Frameworks for Hybrid Implant Prostheses
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Concepts for Designing and Fabricating Metal Implant Frameworks for Hybrid Implant Prostheses

机译:设计和制造混合种植体假体的金属种植体框架的概念

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Edentulous patients have reported difficulties in managing complete dentures; they have also reported functional concerns and higher expectations regarding complete dentures than the dentists who have treated them. Some of the objectives of definitive fixed implant prosthodontic care include predictable, long-term prostheses, improved function, and maintenance of alveolar bone. One of the keys to long-term clinical success is the design and fabrication of metal frameworks that support implant prostheses. Multiple, diverse methods have been reported regarding framework design in implant prosthodontics. Original designs were developed empirically, without the benefit of laboratory testing. Prosthetic complications reported after occlusal loading included screw loosening, screw fracture, prosthesis fracture, crestal bone loss around implants, and implant loss. Numerous authors promoted accurately fitting frameworks; however, it has been noted that metal frameworks do not fit accurately. Passively fitting metal implant frameworks and implants have not been realized. Biologic consequences of ill-fitting frameworks were not well understood. Basic engineering principles were then incorporated into implant framework designs; however, laboratory testing was lacking. It has been reported that I- and L-beam designs were the best clinical option. With the advent of CAD/CAM protocols, milled titanium frameworks became quite popular in implant prosthodontics. The purpose of this article is to discuss current and past literature regarding implant-retained frameworks for full-arch, hybrid restorations. Benefits, limitations, and complications associated with this type of prosthesis will be reviewed. This discussion will include the relative inaccuracy of casting/implant fit and improved accuracy noted with CAD/CAM framework/implant fit; cantilever extensions relative to the A/P implant spread; and mechanical properties associated with implant frameworks including I- and L-beam designs. Guidelines will be proposed for use by clinicians and laboratory technicians in designing implant-retained frameworks.
机译:牙科医生报告难以管理全口义齿;他们还报告了对全口假牙的功能性关注和更高的期望,远高于对它们进行治疗的牙医。最终固定植入物修复的目标包括可预测的长期修复,改善功能和维持牙槽骨。长期临床成功的关键之一是设计和制造支持假体的金属框架。关于种植体修复中的框架设计,已经报道了多种多样的方法。原始设计是凭经验开发的,没有实验室测试的好处。咬合负荷后报告的修复并发症包括螺丝松动,螺丝断裂,假体骨折,植入物周围的牙槽骨丢失和植入物丢失。许多作者提倡精确拟合框架。然而,已经注意到金属框架不能精确地配合。被动装配金属植入物框架和植入物尚未实现。不合适的框架的生物学后果尚不十分清楚。然后将基本工程原理纳入植入物框架设计中。但是,缺乏实验室测试。据报道,工字钢和L型钢设计是最佳的临床选择。随着CAD / CAM协议的出现,铣削的钛框架在假牙修复中变得非常流行。本文的目的是讨论有关用于全牙弓混合修复的植入物保留框架的当前和过去的文献。与这种类型的假体相关的好处,局限性和并发症将被审查。该讨论将包括铸造/植入物配合的相对不准确性以及CAD / CAM框架/植入物配合所指出的提高的准确性;相对于A / P植入物扩展的悬臂延伸;与包括I型和L型梁设计的植入物框架相关的机械性能。将提出指南,供临床医生和实验室技术人员在设计植入物固定框架时使用。

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