Department of Biomedical Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai, TN, India.
School of Bio-sciences and Technology, Vellore Institute of Technology, Vellore, TN, India.
Proc Inst Mech Eng H. 2022 Nov;236(11):1583-1594. doi: 10.1177/09544119221122856. Epub 2022 Sep 15.
Human body comprises of different internal and external biological components. Human organs tend to fail due to continuous or sudden stress which leads to deterioration, failure, and dislocation. The choice of selection and fabrication of materials for tissue engineering play a key role in terms of suitability, sensitivity, and functioning with other organs as a replacement for failed organs. The progressive improvement of the additive manufacturing (AM) approach in healthcare made it possible to print multi-material and customized complex/intricate geometries in a layer-by-layer fashion. The customized or patient-specific implant fabrication can be easily produced with a high success rate due to the development of AM technologies with tailorable properties. The structural behavior of 3D printed biomaterials is a crucial factor in tissue engineering as they affect the functionality of the implants. Various techniques have been developed in appraising the important features and the effects of the subsequent design of the biomaterial implants. The behavior of the AM built biomaterial implants can be understood visually by an imaging system with a high spatial and spectral resolution. This review intends to present an overview of various biomaterials used in implants, followed by a detailed description of optical 3D printing procedures and evaluation of the performance of 3D printed biomaterials using optical characterization.
人体由不同的内部和外部生物成分组成。由于持续或突然的压力,人体器官往往会失效,导致恶化、衰竭和脱位。选择和制造用于组织工程的材料在适用性、敏感性以及与其他器官作为失效器官的替代品的功能方面起着关键作用。医疗保健中添加剂制造 (AM) 方法的不断改进使得以逐层方式打印多材料和定制复杂/精细几何形状成为可能。由于具有可定制特性的 AM 技术的发展,可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物,因为它们可以轻松地以高成功率生产定制或患者特定的植入物。各种技术已经被开发出来,用于评估生物材料植入物的重要特征和后续设计的影响。可以通过具有高空间和光谱分辨率的成像系统直观地了解 AM 制造的生物材料植入物的行为。本综述旨在介绍用于植入物的各种生物材料的概述,随后详细描述光学 3D 打印程序,并使用光学特性评估来评估 3D 打印生物材料的性能。