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用于牙载式、无线监测口腔和食物消耗的功能型射频三层传感器。

Functional, RF-Trilayer Sensors for Tooth-Mounted, Wireless Monitoring of the Oral Cavity and Food Consumption.

机构信息

Department of Biomedical Engineering, Tufts University, Medford, MA, 02155, USA.

出版信息

Adv Mater. 2018 May;30(18):e1703257. doi: 10.1002/adma.201703257. Epub 2018 Mar 23.

Abstract

Wearable devices have emerged as powerful tools for personalized healthcare in spite of some challenges that limit their widespread applicability as continuous monitors of physiological information. Here, a materials-based strategy to add utility to traditional dielectric sensors by developing a conformal radiofrequency (RF) construct composed of an active layer encapsulated between two reverse-facing split ring resonators is applied. These small (down to 2 mm × 2 mm) passive dielectric sensors possess enhanced sensitivity and can be further augmented by functionalization of this interlayer material. Demonstrator devices are shown where the interlayer is: (i) a porous silk film, and (ii) a modified PNIPAM hydrogel that swells with pH or temperature. In vivo use is demonstrated by adhesion of the device on tooth enamel to detect foods during human ingestion. Such sensors can be easily multiplexed and yield data-rich temporal information during the diffusion of analytes within the trilayer structure. This format could be extended to a suite of interlayer materials for sensing devices of added use and specificity.

摘要

尽管可穿戴设备在将其作为生理信息连续监测器广泛应用方面存在一些限制,但它们已成为个性化医疗的有力工具。在这里,通过开发由夹在两个反向分裂环谐振器之间的有源层组成的共形射频 (RF) 结构,提出了一种基于材料的策略来为传统介电传感器增加功能。这些小尺寸(小至 2 毫米×2 毫米)的无源介电传感器具有更高的灵敏度,并可以通过对该层间材料进行功能化进一步增强。展示了演示设备,其中层间材料为:(i)多孔丝膜,和(ii)随 pH 值或温度膨胀的改性 PNIPAM 水凝胶。通过将设备粘附在牙釉质上来检测人类摄入食物时的情况,证明了其在体内的使用。这种传感器可以很容易地进行多路复用,并在三层层状结构内分析物扩散过程中提供丰富的时间信息。这种格式可以扩展到一系列用于传感设备的层间材料,以增加其用途和特异性。

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