Optics and Photonics Group, Faculty of Engineering, University of Nottingham, Nottingham NG7 2RD, UK.
Department of Engineering, School of Science and Technology, Nottingham Trent University Nottingham, Nottingham NG1 4FQ, UK.
Sensors (Basel). 2022 Feb 24;22(5):1798. doi: 10.3390/s22051798.
Compression therapy is widely used as the gold standard for management of chronic venous insufficiency and venous leg ulcers, and the amount of pressure applied during the compression therapy is crucial in supporting healing. A fibre optic pressure sensor using Fibre Bragg Gratings (FBGs) is developed in this paper to measure sub-bandage pressure whilst removing cross-sensitivity due to strain in the fibre and temperature. The interface pressure is measured by an FBG encapsulated in a polymer and housed in a textile to minimise discomfort for the patient. The repeatability of a manual fabrication process is investigated by fabricating and calibrating ten sensors. A customized calibration setup consisting of a programmable translation stage and a weighing scale gives sensitivities in the range 0.4-1.5 pm/mmHg (2.6-11.3 pm/kPa). An alternative calibration method using a rigid plastic cylinder and a blood pressure cuff is also demonstrated. Investigations are performed with the sensor under a compression bandage on a phantom leg to test the response of the sensor to changing pressures in static situations. Measurements are taken on a human subject to demonstrate changes in interface pressure under a compression bandage during motion to mimic a clinical application. These results are compared to the current gold standard medical sensor using a Bland-Altman analysis, with a median bias ranging from -4.6 to -20.4 mmHg, upper limit of agreement (LOA) from -13.5 to 2.7 mmHg and lower LOA from -32.4 to -7.7 mmHg. The sensor has the potential to be used as a training tool for nurses and can be left in situ to monitor bandage pressure during compression therapy.
压迫疗法被广泛用作治疗慢性静脉功能不全和静脉性腿部溃疡的金标准,而在压迫疗法中施加的压力量对于支持愈合至关重要。本文开发了一种使用光纤布拉格光栅(FBG)的光纤压力传感器,以测量绷带下的压力,同时消除由于光纤和温度引起的应变的交叉敏感性。通过将 FBG 封装在聚合物中并放置在纺织品中来测量界面压力,以最大程度地减少患者的不适。通过制造和校准十个传感器来研究手动制造工艺的重复性。由可编程平移台和称重秤组成的定制校准设置提供了 0.4-1.5 pm/mmHg(2.6-11.3 pm/kPa)范围内的灵敏度。还展示了一种使用刚性塑料圆柱和血压袖带的替代校准方法。在幻影腿上的压缩绷带下对传感器进行了测试,以测试传感器在静态情况下对压力变化的响应。在人类受试者上进行了测量,以演示在运动过程中压缩绷带下界面压力的变化,以模拟临床应用。这些结果与使用 Bland-Altman 分析的当前金标准医疗传感器进行了比较,中位偏差范围为-4.6 至-20.4 mmHg,上限协议范围为-13.5 至 2.7 mmHg,下限协议范围为-32.4 至-7.7 mmHg。该传感器有可能用作护士的培训工具,并且可以留在原处以在压迫治疗期间监测绷带压力。