Integrated Nanotechnology Lab and Integrated Disruptive Electronic Applications (IDEA) Lab, Computer Electrical Mathematical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
Department of Electrical and Electronics Engineering, Izmir Institute of Technology, Urla, 35430, Izmir, Turkey.
Adv Mater. 2018 Apr;30(16):e1705759. doi: 10.1002/adma.201705759. Epub 2018 Feb 27.
With the increased global population, it is more important than ever to expand accessibility to affordable personalized healthcare. In this context, a seamless integration of microfluidic technology for bioanalysis and drug delivery and complementary metal oxide semiconductor (CMOS) technology enabled data-management circuitry is critical. Therefore, here, the fundamentals, integration aspects, and applications of CMOS-enabled microfluidic systems for affordable personalized healthcare systems are presented. Critical components, like sensors, actuators, and their fabrication and packaging, are discussed and reviewed in detail. With the emergence of the Internet-of-Things and the upcoming Internet-of-Everything for a people-process-data-device connected world, now is the time to take CMOS-enabled microfluidics technology to as many people as possible. There is enormous potential for microfluidic technologies in affordable healthcare for everyone, and CMOS technology will play a major role in making that happen.
随着全球人口的增加,扩大负担得起的个性化医疗保健的可及性比以往任何时候都更加重要。在这种情况下,将用于生物分析和药物输送的微流控技术与互补金属氧化物半导体 (CMOS) 技术集成的数据管理电路至关重要。因此,本文介绍了用于负担得起的个性化医疗保健系统的 CMOS 功能微流控系统的基础、集成方面和应用。详细讨论和审查了关键组件,如传感器、执行器及其制造和封装。随着物联网的出现和即将到来的万物互联,为一个人与数据设备相连的世界,现在是将 CMOS 功能微流控技术推向尽可能多的人的时候了。微流控技术在每个人都负担得起的医疗保健方面具有巨大的潜力,CMOS 技术将在实现这一目标方面发挥重要作用。