*Faculty of Health Sciences, University of Malta, Msida, Malta.
†Centre of Biomedical Cybernetics, University of Malta, Msida, Malta.
J Am Podiatr Med Assoc. 2022 Apr 27;112(2):21-065. doi: 10.7547/21-065.
People suffering from diabetes are at risk of developing foot ulcerations which, if left untreated, could also lead to amputation. Monitoring of the foot temperature can help in the prevention of these foot complications, and various studies have shown that elevated temperatures may be indicative of ulceration. Over the years, there have been various devices that were designed for foot temperature monitoring, for both clinical and home use. The technologies used included infrared thermometry, liquid crystal thermography, infrared thermography, and a vast range of analogue and digital temperature sensors incorporated into different measurement platforms. All these systems are able to collect thermal data from the foot, with some being able to acquire data only when the foot is stationary and others being able to acquire data from the foot in motion, which can give more in-depth insight into any emerging problems. The aim of this review is to evaluate the available literature related to the technologies used in these systems, outlining the benefits of each and what further developments may be required to make the foot temperature analysis more effective.
患有糖尿病的人有发生足部溃疡的风险,如果不加以治疗,也可能导致截肢。监测足部温度有助于预防这些足部并发症,多项研究表明,温度升高可能表明有溃疡。多年来,已经有各种专门用于监测足部温度的设备,用于临床和家庭使用。所使用的技术包括红外测温、液晶热成像、红外热成像以及广泛的模拟和数字温度传感器,这些传感器集成在不同的测量平台中。所有这些系统都能够从足部收集热数据,有些系统只能在足部静止时获取数据,而有些系统能够从运动中的足部获取数据,这可以更深入地了解任何新出现的问题。本综述的目的是评估与这些系统中使用的技术相关的现有文献,概述每种技术的优点以及可能需要进一步开发的内容,以使足部温度分析更加有效。