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Flexible Sensors for Pressure Therapy: Effect of Substrate Curvature and Stiffness on Sensor Performance

机译:用于压力治疗的柔性传感器:基板曲率和刚度对传感器性能的影响

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摘要

Flexible pressure sensors are increasingly being used in medical and non-medical applications, and particularly in innovative health monitoring. Their efficacy in medical applications such as compression therapy depends on the accuracy and repeatability of their output, which in turn depend on factors such as sensor type, shape, pressure range, and conformability of the sensor to the body surface. Numerous researchers have examined the effects of sensor type and shape, but little information is available on the effect of human body parameters such as support surfaces’ curvature and the stiffness of soft tissues on pressure sensing performance. We investigated the effects of body parameters on the performance of pressure sensors using a custom-made human-leg-like test setup. Pressure sensing parameters such as accuracy, drift and repeatability were determined in both static (eight hours continuous pressure) and dynamic (10 cycles of pressure application of 30 s duration) testing conditions. The testing was performed with a focus on compression therapy application for venous leg ulcer treatments, and was conducted in a low-pressure range of 20–70 mmHg. Commercially available sensors manufactured by Peratech and Sensitronics were used under various loading conditions to determine the influence of stiffness and curvature. Flat rigid, flat soft silicone and three cylindrical silicone surfaces of radii of curvature of 3.5 cm, 5.5 cm and 6.5 cm were used as substrates under the sensors. The Peratech sensor averaged 94% accuracy for both static and dynamic measurements on all substrates; the Sensitronics sensor averaged 88% accuracy. The Peratech sensor displayed moderate variations and the Sensitronics sensor large variations in output pressure readings depending on the underlying test surface, both of which were reduced markedly by individual pressure calibration for surface type. Sensor choice and need for calibration to surface type are important considerations for their application in healthcare monitoring.
机译:柔性压力传感器越来越多地用于医疗和非医疗应用,尤其是在创新的健康监测中。它们在诸如压缩疗法等医学应用中的功效取决于其输出的准确性和可重复性,而准确性和可重复性又取决于诸如传感器类型,形状,压力范围以及传感器与体表的适应性之类的因素。许多研究人员已经检查了传感器类型和形状的影响,但是关于人体参数(如支撑表面的曲率和软组织的刚度)对压力感测性能的影响的信息很少。我们使用定制的类似于人腿的测试装置研究了身体参数对压力传感器性能的影响。在静态(八小时连续压力)和动态(十次施加30 s的压力循环)测试条件下都确定了压力感测参数,例如精度,漂移和可重复性。该测试的重点是在腿部静脉溃疡治疗中的压缩疗法应用,并且在20-70 mmHg的低压范围内进行。由Peratech和Sensitronics制造的市售传感器在各种负载条件下用于确定刚度和曲率的影响。传感器下方使用平坦的刚性,平坦的软硅树脂和曲率半径分别为3.5 cm,5.5 cm和6.5 cm的三个圆柱形有机硅表面作为衬底。 Peratech传感器在所有基板上进行静态和动态测量的平均精度为94%; Sensitronics传感器的平均准确度为88%。 Peratech传感器的输出压力读数显示适度变化,而Sensitronics传感器的输出压力读数则变化较大,这取决于基础测试表面,通过针对表面类型的单独压力校准,这两者均已显着降低。传感器的选择以及对表面类型的校准的需要是其在医疗保健监控中的重要考虑因素。

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