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Novel developments in mobile sensing based on the integration of microfluidic devices and smartphones

机译:基于微流控设备和智能手机集成的移动传感领域的新发展

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摘要

Portable electronic devices and wireless communication systems enable a broad range of applications such as environmental and food safety monitoring, personalized medicine and healthcare management. Particularly, hybrid smartphone and microfluidic devices provide an integrated solution for the new generation of mobile sensing applications. Such mobile sensing based on microfluidic devices (broadly defined) and smartphones (MS2) offers a mobile laboratory for performing a wide range of bio-chemical detection and analysis functions such as water and food quality analysis, routine health tests and disease diagnosis. MS2 offers significant advantages over traditional platforms in terms of test speed and control, low cost, mobility, ease-of-operation and data management. These improvements put MS2 in a promising position in the fields of interdisciplinary basic and applied research. In particular, MS2 enables applications to remote infield testing, homecare, and healthcare in low-resource areas. The marriage of smartphones and microfluidic devices offers a powerful on-chip operating platform to enable various bio-chemical tests, remote sensing, data analysis and management in a mobile fashion. The implications of such integration are beyond telecommunication and microfluidic-related research and technology development. In this review, we will first provide the general background of microfluidic-based sensing, smartphone-based sensing, and their integration. Then, we will focus on several key application areas of MS2 by systematically reviewing the important literature in each area. We will conclude by discussing our perspectives on the opportunities, issues and future directions of this emerging novel field.
机译:便携式电子设备和无线通信系统实现了广泛的应用,例如环境和食品安全监控,个性化医学和医疗保健管理。特别是,混合智能手机和微流体设备为新一代移动传感应用提供了集成解决方案。这种基于微流体设备(广泛定义)和智能手机(MS2)的移动感应提供了一个移动实验室,用于执行各种生化检测和分析功能,例如水和食品质量分析,常规健康测试和疾病诊断。与传统平台相比,MS2在测试速度和控制,低成本,移动性,易于操作和数据管理方面具有明显优势。这些改进使MS2在跨学科基础和应用研究领域中处于有希望的地位。特别是,MS2使应用程序可以在资源贫乏地区进行远程现场测试,家庭护理和医疗保健。智能手机和微流体设备的结合提供了强大的片上操作平台,以移动方式支持各种生化测试,遥感,数据分析和管理。这种集成的含义超出了与电信和微流体相关的研究和技术开发的范围。在本文中,我们将首先提供基于微流体的传感,基于智能手机的传感及其集成的一般背景。然后,我们将通过系统地回顾每个领域的重要文献,来专注于MS2的几个关键应用领域。最后,我们将讨论对这个新兴小说领域的机会,问题和未来方向的看法。

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