基于rfid的血管血流监测传感器

Yaneev Hacohen, S. Majerus
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引用次数: 0

摘要

这项工作展示了一种无电池、可植入的带有RFID读数的血流传感器。这种灵活的传感器系统是专门为血管周围的手术植入而开发的,不接触血液,以提高传感器的稳定性。射频识别数据/电源天线采用分体式双螺旋天线(DHA)实现,可以在人体管状结构(如天然或合成血管)周围进行手术放置。利用压阻式炭黑-聚二甲基硅氧烷(PDMS)纳米复合材料研制了一种柔性脉冲传感器(FPS),可以测量血流引起的血管扩张。商用RFID芯片使传感器能够实时读取到外部收发器,采样率为12 Hz,读取距离为3.5 cm。制备了直径为3 ~ 8 mm的dha,质量因子为9 ~ 23。开发了可植入DHA天线的原型,用于缠绕3至8毫米的血管。在模拟狭窄的血管幻影上进行的验证实验表明,血液流速监测范围为200 - 400 mL/min,并且能够区分低至10 mL/min的血流变化。
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An RFID-Based Sensor for Vascular Flow Monitoring
This work demonstrates a batteryless, implantable blood-flow sensor with RFID readout. This flexible sensor system was developed specifically for surgical implantation around blood vessels, without contacting blood to improve sensor stability. An RFID data/power antenna was implemented using a split-double helix antenna (DHA) to enable surgical placement around a tubular structure in the body, e.g. a natural or synthetic blood vessel. A flexible pulsation sensor (FPS) was developed from a piezoresistive carbon black-polydimethylsiloxane (PDMS) nanocomposite, which enabled measurement of vascular distension caused by blood flow. A commercial RFID chip enabled sensor readout to an external transceiver in real time with a sample rate of 12 Hz and reading distance of 3.5 cm. DHAs with diameter of 3–8 mm were fabricated and had modest quality factors of 9 - 23. Prototype implantable DHA antennas were developed to wrap around vessels of 3 to 8 mm. Validation experiments on a vascular phantom with simulated stenosis demonstrated blood flow rate monitoring from 200 - 400 mL/min with the capacity to distinguish flow changes as low as 10 mL/min.
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