Discipline of Women's Health, School of Clinical Medicine, Faculty of Medicine, University of New South Wales, Sydney, NSW 2052, Australia.
Product Design, School of Design, Faculty of Design, Architecture and Built Environment, University of Technology Sydney, Sydney, NSW 2007, Australia.
Sensors (Basel). 2023 Nov 12;23(22):9130. doi: 10.3390/s23229130.
Diabetes Mellitus incidence and its negative outcomes have dramatically increased worldwide and are expected to further increase in the future due to a combination of environmental and social factors. Several methods of measuring glucose concentration in various body compartments have been described in the literature over the years. Continuous advances in technology open the road to novel measuring methods and innovative measurement sites. The aim of this comprehensive review is to report all the methods and products for non-invasive glucose measurement described in the literature over the past five years that have been tested on both human subjects/samples and tissue models. A literature review was performed in the MDPI database, with 243 articles reviewed and 124 included in a narrative summary. Different comparisons of techniques focused on the mechanism of action, measurement site, and machine learning application, outlining the main advantages and disadvantages described/expected so far. This review represents a comprehensive guide for clinicians and industrial designers to sum the most recent results in non-invasive glucose sensing techniques' research and production to aid the progress in this promising field.
糖尿病的发病率及其不良后果在全球范围内显著增加,预计由于环境和社会因素的综合作用,未来还会进一步增加。多年来,文献中已经描述了测量各种体腔葡萄糖浓度的几种方法。技术的不断进步为新的测量方法和创新的测量部位开辟了道路。本综述的目的是报告过去五年中在文献中描述的所有非侵入性血糖测量方法和产品,这些方法已经在人体样本和组织模型上进行了测试。在 MDPI 数据库中进行了文献回顾,共回顾了 243 篇文章,并对 124 篇文章进行了叙述性总结。不同的技术比较侧重于作用机制、测量部位和机器学习应用,概述了迄今为止描述/预期的主要优缺点。本综述为临床医生和工业设计师提供了全面的指导,总结了非侵入性血糖传感技术研究和生产的最新成果,有助于推动这一有前途的领域的发展。