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用于压力治疗监测的纺织传感器压力映射

Pressure mapping with textile sensors for compression therapy monitoring.

作者信息

Baldoli Ilaria, Mazzocchi Tommaso, Paoletti Clara, Ricotti Leonardo, Salvo Pietro, Dini Valentina, Laschi Cecilia, Francesco Fabio Di, Menciassi Arianna

机构信息

The BioRobotics Institute, Scuola Superiore Sant'Anna, Pontedera, Italy

The BioRobotics Institute, Scuola Superiore Sant'Anna, Pontedera, Italy.

出版信息

Proc Inst Mech Eng H. 2016 Aug;230(8):795-808. doi: 10.1177/0954411916655184. Epub 2016 Jun 22.

Abstract

Compression therapy is the cornerstone of treatment in the case of venous leg ulcers. The therapy outcome is strictly dependent on the pressure distribution produced by bandages along the lower limb length. To date, pressure monitoring has been carried out using sensors that present considerable drawbacks, such as single point instead of distributed sensing, no shape conformability, bulkiness and constraints on patient's movements. In this work, matrix textile sensing technologies were explored in terms of their ability to measure the sub-bandage pressure with a suitable temporal and spatial resolution. A multilayered textile matrix based on a piezoresistive sensing principle was developed, calibrated and tested with human subjects, with the aim of assessing real-time distributed pressure sensing at the skin/bandage interface. Experimental tests were carried out on three healthy volunteers, using two different bandage types, from among those most commonly used. Such tests allowed the trends of pressure distribution to be evaluated over time, both at rest and during daily life activities. Results revealed that the proposed device enables the dynamic assessment of compression mapping, with a suitable spatial and temporal resolution (20 mm and 10 Hz, respectively). In addition, the sensor is flexible and conformable, thus well accepted by the patient. Overall, this study demonstrates the adequacy of the proposed piezoresistive textile sensor for the real-time monitoring of bandage-based therapeutic treatments.

摘要

压迫疗法是下肢静脉溃疡治疗的基石。治疗效果严格取决于绷带沿下肢长度产生的压力分布。迄今为止,压力监测一直使用存在相当多缺点的传感器,如单点而非分布式传感、无形状贴合性、体积大以及对患者活动有限制。在这项工作中,对矩阵纺织传感技术测量绷带下压力的能力进行了探索,其具有合适的时间和空间分辨率。基于压阻传感原理开发了一种多层纺织矩阵,对其进行了校准并在人体受试者上进行了测试,目的是评估皮肤/绷带界面处的实时分布式压力传感。使用两种最常用的不同绷带类型,对三名健康志愿者进行了实验测试。这些测试使得能够评估在休息和日常生活活动期间随时间变化的压力分布趋势。结果表明,所提出的装置能够以合适的空间和时间分辨率(分别为20毫米和10赫兹)对压迫映射进行动态评估。此外,该传感器灵活且贴合,因此患者易于接受。总体而言,本研究证明了所提出的压阻纺织传感器对于基于绷带的治疗方法进行实时监测的适用性。

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