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一种射频供电的无线多通道植入式生物传感微系统。

An RF-powered wireless multi-channel implantable bio-sensing microsystem.

作者信息

Young Darrin J

机构信息

University of Utah, Salt Lake City, Utah, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:6413-6. doi: 10.1109/IEMBS.2010.5627318.

Abstract

An RF-powered wireless three-channel implantable bio-sensing microsystem is developed with blood pressure, EKG, and core body temperature sensing capability for untethered genetically engineered laboratory mice real-time monitoring. A flat silicone blood pressure sensing cuff with a MEMS capacitive pressure sensor is employed to form a novel less-invasive blood pressure sensor, which avoids vessel occlusion, bleeding, and blood clotting associated with the conventional catheter-based sensors. The implantable microsystem can be powered by an adaptively controlled external RF energy source at 4 MHz to ensure a stable on-chip power supply. The overall system dissipates 200 microW and achieves a blood pressure sensing resolution of 1 mmHg within 1 kHz bandwidth, an EKG sensing resolution of 7.4 bits, and a temperature sensitivity of 19 mV/°C measured from 22 °C to 43 °C. A prototype packaged sensor exhibits a weight of 495 mg, which is approximately 2% of a laboratory mouse body mass. On-going research effort is devoted to demonstrate in vivo performance in laboratory animals.

摘要

开发了一种由射频供电的无线三通道植入式生物传感微系统,该系统具备血压、心电图和核心体温传感功能,可用于对无束缚的基因工程实验小鼠进行实时监测。采用带有微机电系统电容式压力传感器的扁平硅胶血压传感袖带,形成了一种新型的微创血压传感器,避免了与传统基于导管的传感器相关的血管阻塞、出血和血液凝固问题。植入式微系统可由一个4兆赫兹的自适应控制外部射频能量源供电,以确保稳定的片上电源供应。整个系统功耗为200微瓦,在1千赫兹带宽内实现了1毫米汞柱的血压传感分辨率、7.4比特的心电图传感分辨率以及在22摄氏度至43摄氏度范围内测得的19毫伏/摄氏度的温度灵敏度。一个封装好的传感器原型重量为495毫克,约为实验小鼠体重的2%。正在进行的研究工作致力于在实验动物身上展示其体内性能。

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