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A tactile sensing array integrated with tension sensor for continuously monitoring blood pulse waves

机译:带有张力传感器的触觉感应阵列,可连续监测脉搏波

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摘要

This work presents a system of continuously monitoring blood pulse waves that is integrated with a highly sensitive tactile sensing array and tension sensor. The sensing elements for the array and tension sensor consist of highly sensitive conductive polymer films based on multi-wall carbon nanotube (MWCNT) patterned with microdome structures. The tactile sensing array is designed in a 3 x 1 linear configuration, which greatly facilitates aligning the sensing array with the radial artery during measurement. The primary purpose of the tension sensor is to determine the optimal, most comfortable conditions for obtaining stable, clear pulse waves. The measured results show that the proposed sensing element is of high sensitivity (- 0.438 kPa(-)(1)). In addition, the mechanical model for the arterial tonometry method was derived and the linear regression analysis technique was used to calculate the parameters of the model for estimating blood pressure. The results of blood pressure estimation showed that the R-2 values were 0.91 and 0.70 for systolic blood pressures and diastolic blood pressures, respectively.
机译:这项工作提出了一种连续监测脉搏波的系统,该系统与高灵敏度的触觉传感阵列和张力传感器集成在一起。阵列和张力传感器的传感元件由高灵敏度的导电聚合物薄膜组成,该薄膜基于带有微孔结构的多壁碳纳米管(MWCNT)。触觉传感阵列以3 x 1线性配置设计,极大地方便了测量期间将传感阵列与radial动脉对准。张力传感器的主要目的是确定最佳,最舒适的条件以获得稳定,清晰的脉搏波。测量结果表明,提出的传感元件具有高灵敏度(-0.438 kPa(-)(1))。另外,推导了用于动脉眼压法的机械模型,并使用线性回归分析技术来计算模型的参数以估计血压。血压估算结果表明,收缩压和舒张压的R-2值分别为0.91和0.70。

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