可穿戴电子设备芯片实验室技术的可靠性:一个视角

Swarup Kumar Subudhi, Siddhartha Das
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引用次数: 0

摘要

在过去的几十年里,芯片实验室(LoC)设备使健康诊断变得更加容易和便宜,它可以快速、轻松、廉价地测量不同的生化标志物,表皮可回收的生物液体(如汗液和间质液)的特性等。这些传感技术的小型化以及柔性框架(微流体组件和电子设备)和用户友好软件的集成为自主和持续跟踪人类健康参数铺平了道路。然而,随着新技术的出现,出现了新的和复杂的挑战,特别是在这些微型LoC器件的情况下。虽然微流体技术面临的挑战,如分析物污染、流速可变性、提高检测特异性等正在研究中,但更大的问题是:从长远来看,这些可穿戴设备的可靠性如何?这篇透视文章首先讨论了已被纳入可穿戴设备的最先进的LoC技术。接下来,该观点确定了一些对所使用的集成可穿戴电子设备进行的(以及被忽视的)可靠性研究。最后,讨论了基于lc的可穿戴电子产品可靠性研究面临的挑战和未来的研究方向。
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Reliability of lab-on-a-chip technologies for wearable electronics: a perspective
Over the past few decades, Lab-on-a-chip (LoC) devices have made health diagnostics easier and cheaper by enabling rapid, hassle-free, and inexpensive measurements of different biochemical markers, properties of epidermally retrievable biofluids (e.g., sweat and interstitial fluids), etc. The miniaturization of these sensing technologies along with the integration of flexible frameworks (microfluidic assemblies and electronics) and user-friendly software have paved the way for autonomous and continuous tracking of human health parameters. However, with emerging new technologies, there are new and complex challenges, especially in the case of these miniature LoC devices. Although microfluidics-specific challenges such as analyte contamination, flow rate variability, improving detection specificity, etc. are being worked upon, the bigger question is: how reliable are these wearable devices in the long run? This perspective piece initially talks about the state-of-the-art LoC technologies that have been incorporated into wearable devices. Next, the perspective identifies some of the reliability studies conducted (as well as overlooked) on the integrated wearable electronics used. Finally, the paper discusses the challenges and future directions of research in the field of reliability of LoC-based wearable electronics.
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