Fabrication and characterization of CMOS-compatible perforated micromembranes for biomedical applications

Noah Brechmann, Marvin Michel, Alina Bola, Franziska Renz, Andreas Pickhinke, Karsten Seidl
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引用次数: 0

Abstract

Abstract We report the optimized wafer-scale fabrication of microporous membranes for applications in the biomedical field such as cell filtration. Existing similar devices can mostly not be integrated on CMOS circuits or mass fabricated. Both is enabled here by the exclusive use of scalable and low temperature microsystems technology methods on silicon wafers. The successfully manufactured devices are characterized with regard to the feasibility of an integrated clogging detection or captured cell counter. The results from electrochemical measurements across the chips match the calculations from a corresponding theoretical model well, verifying the described concept. Further electrical functionalities may thus be integrated into the micromembrane device in the future, equipping it for new applications and allowing a more efficient solution for existing tasks of similar devices.
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生物医学用cmos兼容穿孔微膜的制备与表征
摘要:本文报道了微孔膜在生物医学领域的应用,如细胞过滤。现有的类似器件大多不能集成在CMOS电路上或批量制造。这两者都是通过在硅片上独家使用可扩展和低温微系统技术方法实现的。成功制造的设备的特点在于集成堵塞检测或捕获细胞计数器的可行性。芯片上的电化学测量结果与相应理论模型的计算结果相匹配,验证了所描述的概念。因此,未来可能会将进一步的电气功能集成到微膜设备中,为新的应用提供装备,并为类似设备的现有任务提供更有效的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Directions in Biomedical Engineering
Current Directions in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
0.90
自引率
0.00%
发文量
239
审稿时长
14 weeks
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