School of Fashion and Textiles, Royal Melbourne Institute of Technology, Melbourne 3056, Australia.
Sensors (Basel). 2017 Aug 21;17(8):1923. doi: 10.3390/s17081923.
The recent use of graduated compression therapy for treatment of chronic venous disorders such as leg ulcers and oedema has led to considerable research interest in flexible and low-cost force sensors. Properly applied low pressure during compression therapy can substantially improve the treatment of chronic venous disorders. However, achievement of the recommended low pressure levels and its accurate determination in real-life conditions is still a challenge. Several thin and flexible force sensors, which can also function as pressure sensors, are commercially available, but their real-life sensing performance has not been evaluated. Moreover, no researchers have reported information on sensor performance during static and dynamic loading within the realistic test conditions required for compression therapy. This research investigated the sensing performance of five low-cost commercial pressure sensors on a human-leg-like test apparatus and presents quantitative results on the accuracy and drift behaviour of these sensors in both static and dynamic conditions required for compression therapy. Extensive experimental work on this new human-leg-like test setup demonstrated its utility for evaluating the sensors. Results showed variation in static and dynamic sensing performance, including accuracy and drift characteristics. Only one commercially available pressure sensor was found to reliably deliver accuracy of 95% and above for all three test pressure points of 30, 50 and 70 mmHg.
最近,梯度压力疗法在治疗腿部溃疡和水肿等慢性静脉疾病方面的应用引起了人们对灵活、低成本力传感器的极大研究兴趣。在压缩治疗过程中施加适当的低压可以显著改善慢性静脉疾病的治疗效果。然而,要实现推荐的低压水平并在实际条件下准确确定其水平仍然是一个挑战。有几种薄而灵活的力传感器,也可以作为压力传感器,它们已经在商业上可用,但它们在实际生活中的传感性能尚未得到评估。此外,没有研究人员报告过在压缩治疗所需的实际测试条件下,传感器在静态和动态加载下的性能信息。本研究在类似于人体腿部的测试装置上调查了五种低成本商业压力传感器的传感性能,并提供了这些传感器在压缩治疗所需的静态和动态条件下的准确性和漂移行为的定量结果。在这个新的类似于人体腿部的测试设置上进行了广泛的实验工作,证明了它在评估传感器方面的实用性。结果表明,静态和动态传感性能存在差异,包括准确性和漂移特性。只有一种市售压力传感器被发现能够可靠地为所有三个测试压力点(30、50 和 70mmHg)提供 95%及以上的准确性。