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Advanced Fabrication Techniques of Microengineered Physiological Systems

机译:微能生理系统的先进制造技术

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摘要

The field of organs-on-chips (OOCs) has experienced tremendous growth over the last decade. However, the current main limiting factor for further growth lies in the fabrication techniques utilized to reproducibly create multiscale and multifunctional devices. Conventional methods of photolithography and etching remain less useful to complex geometric conditions with high precision needed to manufacture the devices, while laser-induced methods have become an alternative for higher precision engineering yet remain costly. Meanwhile, soft lithography has become the foundation upon which OOCs are fabricated and newer methods including 3D printing and injection molding show great promise to innovate the way OOCs are fabricated. This review is focused on the advantages and disadvantages associated with the commonly used fabrication techniques applied to these microengineered physiological systems (MPS) and the obstacles that remain in the way of further innovation in the field.
机译:Organs-On-Chips(Oocs)领域在过去十年中经历了巨大的增长。然而,进一步增长的当前主要限制因子在于用于可重复地创建多尺度和多功能设备的制造技术。光刻和蚀刻的常规方法对制造装置的高精度复杂的几何条件仍然不太有用,而激光诱导的方法已成为更高的精密工程的替代方案,但仍然保持昂贵。与此同时,软光刻已成为对其制造的基础,并且包括3D印刷和注塑成型的更新方法表现出创新OOC制造的方式创新。该审查专注于与应用于这些微能生理系统(MPS)的常用制造技术相关的优点和缺点以及仍然妨碍在该领域进一步创新的障碍物。

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