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Additive Manufacturing for Guided Bone Regeneration: A Perspective for Alveolar Ridge Augmentation

机译:引导性骨再生的增材制造:增强牙槽Ridge的视角

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摘要

Three-dimensional (3D) printing has become an important tool in the field of tissue engineering and its further development will lead to completely new clinical possibilities. The ability to create tissue scaffolds with controllable characteristics, such as internal architecture, porosity, and interconnectivity make it highly desirable in comparison to conventional techniques, which lack a defined structure and repeatability between scaffolds. Furthermore, 3D printing allows for the production of scaffolds with patient-specific dimensions using computer-aided design. The availability of commercially available 3D printed permanent implants is on the rise; however, there are yet to be any commercially available biodegradable/bioresorbable devices. This review will compare the main 3D printing techniques of: stereolithography; selective laser sintering; powder bed inkjet printing and extrusion printing; for the fabrication of biodegradable/bioresorbable bone tissue scaffolds; and, discuss their potential for dental applications, specifically augmentation of the alveolar ridge.
机译:三维(3D)打印已成为组织工程领域的重要工具,其进一步发展将带来全新的临床可能性。与缺乏支架之间确定的结构和可重复性的常规技术相比,产生具有诸如内部结构,孔隙率和互连性之类的可控特征的组织支架的能力使其非常需要。此外,3D打印允许使用计算机辅助设计生产具有患者特定尺寸的支架。商业上可获得的3D打印永久植入物的可用性正在上升。然而,还没有任何可商购的可生物降解/可生物吸收的装置。这篇评论将比较以下方面的主要3D打印技术:选择性激光烧结粉床喷墨印刷和挤出印刷;用于制造可生物降解/可生物吸收的骨组织支架;并讨论它们在牙科应用中的潜力,特别是牙槽augment的增大。

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