Department of Production Information Technologies, University of Nis, Faculty of Mechanical Engineering, 18000 Nis, Serbia.
University of Al-Qadisiyah, Faculty of Mechanical Engineering, 58001 Al Diwaniyah, Iraq.
J Healthc Eng. 2020 Nov 22;2020:6689961. doi: 10.1155/2020/6689961. eCollection 2020.
The paper reports on the importance of applying the holistic approach in designing a , but also all other kinds of personalized implants. In addition, the paper attempts to point out the important aspects of the design of a PBS against which the quality of a realistic and applicable design solution should be assessed. The holistic approach refers to the adaptation of design features of a bone scaffold to the multilateral specifics related to the particular patient, its surgical case, and curing treatment. To ensure a successful application, five aspects of personalized bone scaffold design should be considered while it is being adapted: anatomical congruency, mechanical conformity, biochemical compatibility and biodegradability, manufacturability, and implantability. To demonstrate the importance of applying a holistic approach in designing a personalized bone scaffold, the paper shows a case where a patient-specific scaffold aimed at the reconstruction of a was designed. The research resulted in a series of recommendations regarding the methods of bone geometry reconstruction and scaffold design. The paper sheds new light on the desired mechanical properties of a personalized bone scaffold while also recommending possible design parameters for optimizing the construction according to these properties. Finally, it recommends a possible procedure of integral production of personalized bone scaffold and bone graft. The presented so-called holistic approach announces a new systematic process of designing a personalized bone scaffold, which, although requiring a comprehensive consideration of complex requirements, is inevitable to make the designed solution applicable.
本文报告了在设计个性化植入物时应用整体方法的重要性,当然也包括其他各种个性化植入物。此外,本文试图指出针对 PBS 设计的重要方面,应根据这些方面来评估现实和适用的设计解决方案的质量。整体方法是指将骨支架的设计特征适应该特定患者、其手术情况和治疗方案的多方面具体情况。为了确保成功应用,在适应个性化骨支架设计时应考虑五个方面:解剖一致性、机械一致性、生物化学兼容性和生物降解性、可制造性和可植入性。为了展示在设计个性化骨支架时应用整体方法的重要性,本文展示了一个针对重建的患者特异性支架设计的案例。该研究提出了一系列关于骨几何重建和支架设计方法的建议。本文阐明了个性化骨支架所需的理想机械性能,并根据这些性能推荐了可能的设计参数以优化结构。最后,本文还建议了个性化骨支架和骨移植物整体生产的可能程序。本文所提出的整体方法宣告了一种新的个性化骨支架设计系统方法,尽管需要全面考虑复杂的要求,但这是使设计解决方案具有适用性所必需的。