Kandwal Abhishek, Sharma Yogeshwar Dutt, Jasrotia Rohit, Kit Chan Choon, Lakshmaiya Natrayan, Sillanpää Mika, Liu Louis Wy, Igbe Tobore, Kumari Asha, Sharma Rahul, Kumar Suresh, Sungoum Chongkol
School of Chips, XJTLU Entrepreneur College (Taicang), Xi'an Jiaotong-Liverpool University, Taicang, Suzhou 215400, China.
Faculty of Engineering and Quantity Surveying, INTI International University, Nilai, 71800, Malaysia.
Heliyon. 2024 Sep 11;10(18):e37825. doi: 10.1016/j.heliyon.2024.e37825. eCollection 2024 Sep 30.
Diabetes is a chronic disease that affects millions of humans worldwide. This review article provides an analysis of the recent advancements in non-invasive blood glucose monitoring, detailing methods and techniques, with a special focus on Electromagnetic wave microwave glucose sensors. While optical, thermal, and electromagnetic techniques have been discussed, the primary emphasis is focussed on microwave frequency sensors due to their distinct advantages. Microwave sensors exhibit rapid response times, require minimal user intervention, and hold potential for continuous monitoring, renders them extremely potential for real-world applications. Additionally, their reduced susceptibility to physiological interferences further enhances their appeal. This review critically assesses the performance of microwave glucose sensors by considering factors such as accuracy, sensitivity, specificity, and user comfort. Moreover, it sheds light on the challenges and upcoming directions in the growth of microwave sensors, including the need for reduction and integration with wearable platforms. By concentrating on microwave sensors within the broader context of non-invasive glucose monitoring, this article aims to offer significant enlightenment that may drive further innovation in diabetes care.
糖尿病是一种影响全球数百万人的慢性疾病。这篇综述文章分析了无创血糖监测的最新进展,详细介绍了方法和技术,特别关注电磁波微波葡萄糖传感器。虽然已经讨论了光学、热学和电磁技术,但由于微波频率传感器具有独特优势,所以主要重点放在了它们身上。微波传感器响应时间快,用户干预最少,具有连续监测的潜力,使其在实际应用中极具潜力。此外,它们对生理干扰的敏感性降低,进一步提高了其吸引力。本综述通过考虑准确性、灵敏度、特异性和用户舒适度等因素,批判性地评估了微波葡萄糖传感器的性能。此外,它还揭示了微波传感器发展中的挑战和未来方向,包括缩小尺寸以及与可穿戴平台集成的需求。通过在无创血糖监测的更广泛背景下关注微波传感器,本文旨在提供重要的启示,可能推动糖尿病护理领域的进一步创新。