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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A Noninvasive, Electromagnetic, Epidermal Sensing Device for Hemodynamics Monitoring
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A Noninvasive, Electromagnetic, Epidermal Sensing Device for Hemodynamics Monitoring

机译:用于血流动力学监测的非侵入性,电磁,表皮传感装置

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Non-intrusive monitoring of blood flow parameters is vital for obtaining physiological and pathophysiological information pertaining to dynamic cardiovascular events and is feasible to achieve via non-invasive, conformal, wearable technologies. Here, we present a proof-of-concept of a fully integrated, high frequency (bandwidth 40 MHz), electromagnetic sensing device for monitoring limb hemodynamics and morphology associated with blood flow. The sensing architecture integrates a novel radio frequency (RF) skin patch resonator embedded with a coplanar outer loop antenna and a scalable, standalone wireless readout hardware based on standing wave ratio (SWR) bridge. The resonator itself is a copper-based open circuit planar Archimedean spiral with a rectangular cross-sectional area, chemically etched on a flexible polyimide substrate. The readout hardware is developed exploiting off-the-shelf components, fabricated on the top of a rigid FR4 substrate. The proposed readout circuit can measure resonant frequency of an RLC network. When energized by the external oscillating RF field via loop antenna, the resonator produces an electromagnetic field response which can be perturbed by dielectric variation inside its field boundary. Through leveraging this principle, the in-vitro experimental results from the benchtop models suggest that the resonators RF attributes such as resonant frequency shift and magnitude variation of reflection coefficient due to fluid volume displacement can be successfully detected through the proposed hardware architecture. Hence, the system could be an alternative to the conventional, multimodal, non-invasive wearable sensing with an unprecedented capability of ubiquitous fluid phenomena detection from multiple sites of the human body.
机译:非侵扰性监测血流参数对于获得与动态心血管事件有关的生理和病理生理学信息至关重要,并且可以通过非侵入性,保形,可穿戴技术实现。在这里,我们提出了一种完全集成,高频(带宽40MHz),电磁传感装置的概念,用于监测与血流相关的肢体血流动力学和形态。感测架构基于站立波比(SWR)桥嵌入具有共面外环天线的新型射频(RF)皮肤贴片谐振器和可伸缩的独立无线读出硬件和可伸缩的独立无线读出硬件。谐振器本身是一种基于铜的开路平面螺旋,其具有矩形横截面积,在柔性聚酰亚胺基板上化学蚀刻。读出硬件开发开发利用搁板的部件,在刚性FR4基板的顶部制造。所提出的读出电路可以测量RLC网络的谐振频率。当通过环形天线的外部振荡RF场通电时,谐振器产生电磁场响应,该电磁场响应可以通过其场边界内的介电变化扰乱。通过利用这一原理,台式模型的体外实验结果表明,通过所提出的硬件架构可以成功地检测谐振器RF属性,例如由于流体容积位移引起的反射系数的谐振频率偏移和幅度变化。因此,该系统可以是常规多模式,非侵入性可耐磨性感测的替代,其具有从人体多个位点检测的普遍存在的流体现象的前所未有的能力。

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