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用于实时诊断传染病的牙种植体温度传感器的研制。

Development of a Dental Implantable Temperature Sensor for Real-Time Diagnosis of Infectious Disease.

机构信息

American Dental Association Science & Research Institute, American Dental Association, Gaithersburg, MD 20899, USA.

Materials Science and Engineering Laboratory, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

Sensors (Basel). 2020 Jul 16;20(14):3953. doi: 10.3390/s20143953.

Abstract

Implantable sensors capable of real-time measurements are powerful tools to diagnose disease and maintain health by providing continuous or regular biometric monitoring. In this paper, we present a dental implantable temperature sensor that can send early warning signals in real time before the implant fails. Using a microfabrication process on a flexible polyimide film, we successfully fabricated a multi-channel temperature sensor that can be wrapped around a dental implant abutment wing. In addition, the feasibility, durability, and implantability of the sensor were investigated. First, high linearity and repeatability between electrical resistance and temperature confirmed the feasibility of the sensor with a temperature coefficient of resistance (TCR) value of 3.33 × 10/°C between 20 and 100 °C. Second, constant TCR values and robust optical images without damage validated sufficient thermal, chemical, and mechanical durability in the sensor's performance and structures. Lastly, the elastic response of the sensor's flexible substrate film to thermal and humidity variations, simulating in the oral environment, suggested its successful long-term implantability. Based on these findings, we have successfully developed a polymer-based flexible temperature sensor for dental implant systems.

摘要

可进行实时测量的植入式传感器是通过提供连续或定期生物识别监测来诊断疾病和保持健康的有力工具。在本文中,我们提出了一种可植入牙齿的温度传感器,它可以在植入物失效之前实时发出预警信号。我们使用柔性聚酰亚胺薄膜上的微制造工艺,成功制造了一种多通道温度传感器,可以缠绕在牙科植入物基台翼上。此外,还研究了传感器的可行性、耐用性和可植入性。首先,电阻与温度之间的高线性度和重复性证实了传感器的可行性,其在 20 至 100°C 之间的电阻温度系数 (TCR) 值为 3.33×10/°C。其次,恒定的 TCR 值和坚固的光学图像表明,传感器的性能和结构具有足够的热、化学和机械耐用性,没有损坏。最后,传感器柔性基底膜对口腔环境中模拟的热和湿度变化的弹性响应表明其成功的长期可植入性。基于这些发现,我们成功开发了一种用于牙科植入系统的聚合物基柔性温度传感器。

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