基于移动健康的国际卫生安全微流控芯片实验室

Mirza Abdul Aleem Baig
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引用次数: 1

摘要

新出现和再次出现的传染病疫情的威胁日益增加,要求研究和开发有效和通用的工具和技术,以促进国际公共卫生安全。生物医学工程的最新进展,主要涉及通信和网络技术在卫生领域的融合,即采用微流控芯片实验室技术的移动医疗可以改善国际公共卫生危机,并应用于国际公共卫生安全。芯片实验室技术现在普遍应用于大多数研究中心、医院和诊所,这些地方的卫生保健基础设施薄弱,获得高质量和及时的医疗服务具有挑战性。微流控装置-也被称为芯片上的实验室(LoC) -是一种可访问的,具有成本效益的和早期检测医学试验的替代方案。基于移动医疗的微流控LoC技术得到了快速发展,在生物医学研究和国际公共卫生领域的广泛应用中成为有影响力的工具。本章的观点展示了移动医疗与制造协议LoC部署的潜在变革机会及其加强和改善国际公共卫生安全的潜力。这一尝试并不是结论性的和详尽的,预计这样的讨论将使生物医学工程、微流控LoC技术专业人员、国际公共卫生和卫生安全专家之间的思想交流成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
mHealth-Based Microfluidic Lab-on-a-Chip for International Health Security
The increasing threats of emerging and reemerging infectious disease outbreaks demand research and development (R&D) of effective and fit-for-all-purpose tools and technologies for international public health security. Recent advances in biomedical engineering, mostly related to the convergence of communication and network technology in health, i.e., mobile health with microfluidic Lab-on-a-Chip technology can improve the international public health crises and employ in international public health security. Lab-on-a-Chip technology is now commonly found in most research centers, hospitals, and clinics where health care infrastructure is weak, and access to quality and timely medical care is challenging. Microfluidic devices—also known as Lab-on-a-Chip (LoC)—are an alternative for accessible, cost-effective, and early detection medical trials. The mHealth-based microfluidic LoC technology has been under rapid development, and they are becoming influential tools in a wide range of biomedical research and international public health applications. The perspective in this chapter demonstrates a potentially transformative opportunity for the deployment of mHealth with LoC with the fabrication protocols and their potential for strengthening and improving the international public health security. This attempt is not conclusive and exhaustive, and it is anticipated that such a discussion will enable the exchange of ideas between biomedical engineering, microfluidic LoC technology professionals, international public health, and health security experts.
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