Taccini N, Loriga G, Pacelli M, Paradiso R
SMARTEX s.r.l., Prato, Italy.
Annu Int Conf IEEE Eng Med Biol Soc. 2008;2008:3690-3. doi: 10.1109/IEMBS.2008.4650010.
In this paper is presented the study leading to the implementation of an innovative sensing textile platform, based on a wearable monitoring system named Wealthy, where novel piezoresistive sensors have been integrated to increase system capability in the field of pulmonary and cardiovascular diseases monitoring. Two different typologies of textile sensors for plethysmograpic measurements have been characterized and compared to evaluate sensors performance, through electro-dynamic laboratory tests and in vivo measurements. The whole system allows continuous remote monitoring of electrocardiogram and impedance pneumography signals through textile electrodes, while piezoresistive fabric sensors placed at the abdominal and thoracic level are able to discriminate between different breathing patterns. All the signals have been acquired simultaneously allowing a comparative control of cardiopulmonary activity and artifact rejection, while a comparative study with standard BIOPAC MP30 respiratory transducers has been performed in basal condition.
本文介绍了一项研究,该研究促成了一个创新的传感纺织平台的实施,该平台基于一个名为Wealthy的可穿戴监测系统,其中集成了新型压阻式传感器,以提高在肺部和心血管疾病监测领域的系统能力。通过电动实验室测试和体内测量,对两种不同类型的用于体积描记测量的纺织传感器进行了表征和比较,以评估传感器性能。整个系统允许通过纺织电极对心电图和阻抗肺图信号进行连续远程监测,而放置在腹部和胸部水平的压阻织物传感器能够区分不同的呼吸模式。所有信号均同时采集,以便对心肺活动进行比较控制和伪迹抑制,同时在基础条件下与标准BIOPAC MP30呼吸换能器进行了比较研究。