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Integrated Design Approaches for 3D Printed Tissue Scaffolds: Review and Outlook

机译:3D打印组织支架的集成设计方法:回顾与展望

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摘要

Emerging 3D printing technologies are enabling the fabrication of complex scaffold structures for diverse medical applications. 3D printing allows controlled material placement for configuring porous tissue scaffolds with tailored properties for desired mechanical stiffness, nutrient transport, and biological growth. However, tuning tissue scaffold functionality requires navigation of a complex design space with numerous trade-offs that require multidisciplinary assessment. Integrated design approaches that encourage iteration and consideration of diverse processes including design configuration, material selection, and simulation models provide a basis for improving design performance. In this review, recent advances in design, fabrication, and assessment of 3D printed tissue scaffolds are investigated with a focus on bone tissue engineering. Bone healing and fusion are examples that demonstrate the needs of integrated design approaches in leveraging new materials and 3D printing processes for specified clinical applications. Current challenges for integrated design are outlined and emphasize directions where new research may lead to significant improvements in personalized medicine and emerging areas in healthcare.
机译:新兴的3D打印技术使制造复杂的支架结构成为可能,可用于各种医疗应用。 3D打印允许受控的材料放置,以配置具有所需机械刚度,养分传输和生物生长所需特性的多孔组织支架。但是,调整组织支架功能需要在复杂的设计空间中导航,并且需要进行多方面的权衡,这需要多学科评估。鼓励迭代和考虑包括设计配置,材料选择和仿真模型在内的各种过程的集成设计方法为改善设计性能提供了基础。在这篇综述中,研究了3D打印组织支架的设计,制造和评估方面的最新进展,重点是骨组织工程。骨愈合和融合是例证,展示了针对特定临床应用利用新材料和3D打印过程的集成设计方法的需求。概述了集成设计的当前挑战,并强调了新研究可能导致个性化医学和医疗保健新兴领域显着改善的方向。

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