IEEE Trans Biomed Circuits Syst. 2019 Dec;13(6):1451-1461. doi: 10.1109/TBCAS.2019.2946519. Epub 2019 Oct 10.
Regular monitoring of blood flow and pressure in vascular reconstructions or grafts would provide early warning of graft failure and improve salvage procedures. Based on biocompatible materials, we have developed a new type of thin, flexible pulsation sensor (FPS) which is wrapped around a graft to monitor blood pressure and flow. The FPS uses carbon black (CB) nanoparticles dispersed in polydimethylsiloxane (PDMS) as a piezoresistive sensor layer, which was encapsulated within structural PDMS layers and connected to stainless steel interconnect leads. Because the FPS is more flexible than natural arteries, veins, and synthetic vascular grafts, it can be wrapped around target conduits at the time of surgery and remain implanted for long-term monitoring. In this study, we analyze strain transduction from a blood vessel and characterize the electrical and mechanical response of CB-PDMS from 0-50% strain. An optimum concentration of 14% CB-PDMS was used to fabricate 300-μm thick FPS devices with elastic modulus under 500 kPa, strain range of over 50%, and gauge factor greater than 5. Sensors were tested in vitro on vascular grafts with flows of 0-1,100 mL/min. In vitro testing showed linear output to pulsatile flows and pressures. Cyclic testing demonstrated robust operation over hundreds of cardiac cycles, with ±2.6 mmHg variation in pressure readout. CB-PDMS composite material showed excellent potential in biologic strain sensing applications where a flexible sensor with large maximum strain range is needed.
定期监测血管重建或移植物中的血流和压力,可以提供移植物失败的早期预警,并改善抢救程序。我们基于生物相容性材料,开发了一种新型的薄而灵活的脉动传感器 (FPS),它可以缠绕在移植物上,以监测血压和流量。FPS 使用分散在聚二甲基硅氧烷 (PDMS) 中的碳黑 (CB) 纳米颗粒作为压阻传感器层,该传感器层被封装在结构 PDMS 层内,并与不锈钢互连引线相连。由于 FPS 比天然动脉、静脉和合成血管移植物更灵活,因此可以在手术时缠绕在目标导管上,并长期植入进行监测。在这项研究中,我们分析了血管的应变传递,并从 0-50%的应变来表征 CB-PDMS 的电和机械响应。使用 14% CB-PDMS 的最佳浓度来制造 300-μm 厚的 FPS 器件,其弹性模量低于 500kPa,应变范围超过 50%,应变系数大于 5。传感器在 0-1,100mL/min 的血流下在血管移植物上进行了体外测试。体外测试表明,传感器对脉动流和压力具有线性输出。循环测试表明,在数百个心动周期内运行稳健,压力读数的变化±2.6mmHg。CB-PDMS 复合材料在需要具有大最大应变范围的灵活传感器的生物应变传感应用中具有巨大的潜力。