Vallittu Pekka K
Department of Biomaterials Science, Turku Clinical Biomaterials Centre - TCBC, Institute of Dentistry, University of Turku, Welfare Division, Turku, Finland.
Acta Biomater Odontol Scand. 2018 Apr 12;4(1):44-55. doi: 10.1080/23337931.2018.1457445. eCollection 2018.
Fibr-reinforced composites (FRC) have been used successfully for decades in many fields of science and engineering applications. Benefits of FRCs relate to physical properties of FRCs and versatile production methods, which can be utilized. Conventional hand lamination of prefabricated FRC prepregs is utilized still most commonly in fabrication of dental FRC devices but CAD-CAM systems are to be come for use in certain production steps of dental constructions and medical FRC implants. Although metals, ceramics and particulate filler resin composites have successfully been used as dental and medical biomaterials for decades, devices made out of these materials do not meet all clinical requirements. Only little attention has been paid to FRCs as dental materials and majority of the research in dental field has been focusing on particulate filler resin composites and in medical biomaterial research to biodegradable polymers. This is paradoxical because FRCs can potentially resolve many of the problems related to traditional isotropic dental and medical materials. This overview reviews the rationale and status of using biostable glass FRC in applications from restorative and prosthetic dentistry to cranial surgery. The overview highlights also the critical material based factors and clinical requirement for the succesfull use of FRCs in dental reconstructions.
纤维增强复合材料(FRC)在许多科学和工程应用领域已经成功应用了数十年。FRC的优势与其物理性能和多样的生产方法有关,这些都可以被利用。预制FRC预浸料的传统手工层压在牙科FRC装置的制造中仍然是最常用的方法,但CAD-CAM系统正开始应用于牙科结构和医用FRC植入物的某些生产步骤。尽管金属、陶瓷和颗粒填充树脂复合材料几十年来已成功用作牙科和医用生物材料,但由这些材料制成的装置并不能满足所有临床需求。作为牙科材料,FRC受到的关注很少,牙科领域的大部分研究一直集中在颗粒填充树脂复合材料上,而医用生物材料研究则集中在可生物降解聚合物上。这很矛盾,因为FRC有可能解决许多与传统各向同性牙科和医用材料相关的问题。本综述回顾了在从修复和假牙修复到颅骨手术等应用中使用生物稳定玻璃FRC的基本原理和现状。该综述还强调了在牙科重建中成功使用FRC的关键基于材料的因素和临床要求。