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用于慢性基于荧光的生物传感器的无线植入式电子平台。

Wireless implantable electronic platform for chronic fluorescent-based biosensors.

机构信息

BioRobotics Institute, Scuola Superiore Sant'Anna, Pisa, Italy.

出版信息

IEEE Trans Biomed Eng. 2011 Jun;58(6):1846-54. doi: 10.1109/TBME.2011.2123098. Epub 2011 Mar 7.

Abstract

The development of a long-term wireless implantable biosensor based on fluorescence intensity measurement poses a number of technical challenges, ranging from biocompatibility to sensor stability over time. One of these challenges is the design of a power efficient and miniaturized electronics, enabling the biosensor to move from bench testing to long term validation, up to its final application in human beings. In this spirit, we present a wireless programmable electronic platform for implantable chronic monitoring of fluorescent-based autonomous biosensors. This system is able to achieve extremely low power operation with bidirectional telemetry, based on the IEEE802.15.4-2003 protocol, thus enabling over three-year battery lifetime and wireless networking of multiple sensors. During the performance of single fluorescent-based sensor measurements, the circuit drives a laser diode, for sensor excitation, and acquires the amplified signals from four different photodetectors. In vitro functionality was preliminarily tested for both glucose and calcium monitoring, simply by changing the analyte-binding protein of the biosensor. Electronics performance was assessed in terms of timing, power consumption, tissue exposure to electromagnetic fields, and in vivo wireless connectivity. The final goal of the presented platform is to be integrated in a complete system for blood glucose level monitoring that may be implanted for at least one year under the skin of diabetic patients. Results reported in this paper may be applied to a wide variety of biosensors based on fluorescence intensity measurement.

摘要

基于荧光强度测量的长期无线植入式生物传感器的开发面临着许多技术挑战,从生物兼容性到传感器随时间的稳定性都存在问题。其中一个挑战是设计高效、小型化的电子设备,使生物传感器能够从台架测试过渡到长期验证,最终应用于人类。本着这种精神,我们提出了一种用于植入式慢性荧光自主生物传感器监测的无线可编程电子平台。该系统基于 IEEE802.15.4-2003 协议,能够实现极低功耗的双向遥测,从而实现超过三年的电池寿命和多个传感器的无线联网。在单个荧光传感器测量的过程中,该电路驱动激光二极管,用于传感器激发,并从四个不同的光电探测器采集放大信号。通过简单地改变生物传感器的分析物结合蛋白,我们对葡萄糖和钙监测的体外功能进行了初步测试。从定时、功耗、组织对电磁场的暴露以及体内无线连接等方面评估了电子设备的性能。所提出的平台的最终目标是集成到一个完整的系统中,用于监测血糖水平,该系统可以在糖尿病患者的皮肤下至少植入一年。本文报告的结果可应用于各种基于荧光强度测量的生物传感器。

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