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Artificial organs design: Towards the integration of disciplines

机译:人工器官设计:走向学科整合

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In this paper, the evolution of design methods is briefly analyzed and discussed with reference to artificial organs intended to substitute for metabolic bodily functions. In the last seventy years, the methods of artificial organ design have evolved towards a more systematic approach that more and more accounts for biological issues (man-machine interfaces, biocompatibility issues, etc.) to the point that at the forefront of research the design paradigm is shifting from fully synthetic mechanical/electronic prostheses towards the development in vitro of tissue engineered replacement organs/tissues, where the artificial part is fully integrated with the biological counterpart. To keep up with this complex scenario, design methods have shifted: from an experiments-based to the methodical approach; from one to multiple objective functions; from focusing on one single process to multiple concurring processes, often differing in time and space scale; from seeking solutions consisting of one device to many coupled devices; from seeking a generic solution for all patients' needs to seeking personalized solutions for each patient, so that the patient should not adapt to an existing device or implant, but it is the device or implant that has to adapt to the patients' specific needs and circumstances. The impact of this evolution in design on the way courses in biomedical engineering are organized and taught in Europe is also briefly analyzed and discussed.
机译:在本文中,将参考旨在替代代谢身体功能的人造器官,简要分析和讨论设计方法的演变。在过去的七十年中,人造器官的设计方法已经发展成为一种更加系统的方法,越来越多地考虑到生物学问题(人机界面,生物相容性问题等),以至于研究成为设计的最前沿范式正在从完全合成的机械/电子假体向组织工程替代器官/组织的体外发展转变,其中人造部分与生物对应部分完全整合在一起。为了适应这种复杂的情况,设计方法已经发生了变化:从基于实验的方法转变为有条理的方法;从一个到多个目标函数;从专注于单个流程到多个并行流程,这些流程通常在时间和空间范围上有所不同;从寻找由一个设备组成的解决方案到许多耦合设备;从寻求满足所有患者需求的通用解决方案到为每个患者寻求个性化解决方案,使患者不应适应现有的设备或植入物,而正是该设备或植入物必须适应患者的特定需求并情况。还简要分析和讨论了设计的这种演变对在欧洲组织和教授生物医学工程课程的方式的影响。

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