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植入式膀胱压力传感器的自动漂移消除

Automatic Drift Cancellation of Implanted Bladder Pressure Sensor.

作者信息

Majerus Steve, Damaser Margot S

机构信息

Advanced Platform Technology Center, Louis Stokes Cleveland VA Medical Center, Cleveland, OH, USA.

Dept. of Electrical Engineering, Case Western Reserve University, Cleveland, OH, USA.

出版信息

IEEE Biomed Circuits Syst Conf. 2015 Oct 22;2015. doi: 10.1109/BioCAS.2015.7348430.

Abstract

Implanted pressure sensors suffer from long-term offset drift due to atmospheric changes, package moisture absorption, and patient factors such as posture, implant shift, and tissue overgrowth. Traditionally, wide dynamic range instrumentation is used to satisfy the full-scale and sensitivity requirements for a given application. Transmission of extra bits greatly increases the power draw of an implanted medical device, and simple AC-coupling cannot monitor static pressures. We present a mixed-signal offset cancellation loop to maximize the AC dynamic range of instrumentation circuitry. A digital implementation allows for designer control of the cancellation system time constant and was specifically designed for power-gated pressure sensors. Pressure offset is calculated by digital integration and a bipolar IDAC with coarse/fine tuning injects an offset-cancelling current into a standard piezoresistive MEMS pressure sensor. Test results showed a dynamic range increase of 2.9 bits using dynamic offset cancellation, for an effective sensing range of 11 bits using 8-bit instrumentation. The measured step response of the system showed an overall highpass response of 2.3 - 3.8 mHz. This approach is therefore relevant for bio-sensing of pressures in organs with a very slow physiologic response, e.g. the bladder.

摘要

植入式压力传感器会因大气变化、封装吸湿以及患者因素(如姿势、植入物移位和组织过度生长)而出现长期偏移漂移。传统上,使用宽动态范围仪器来满足给定应用的满量程和灵敏度要求。传输额外的位会大大增加植入式医疗设备的功耗,并且简单的交流耦合无法监测静态压力。我们提出了一种混合信号偏移消除环路,以最大化仪器电路的交流动态范围。数字实现方式允许设计者控制消除系统的时间常数,并且专门为电源门控压力传感器设计。通过数字积分计算压力偏移,一个具有粗调/微调功能的双极电流源向标准压阻式MEMS压力传感器注入抵消偏移的电流。测试结果表明,使用动态偏移消除时动态范围增加了2.9位,使用8位仪器时有效传感范围为11位。系统的测量阶跃响应显示出2.3 - 3.8 mHz的整体高通响应。因此,这种方法对于生理响应非常缓慢的器官(如膀胱)中的压力生物传感具有重要意义。

相似文献

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Automatic Drift Cancellation of Implanted Bladder Pressure Sensor.植入式膀胱压力传感器的自动漂移消除
IEEE Biomed Circuits Syst Conf. 2015 Oct 22;2015. doi: 10.1109/BioCAS.2015.7348430.
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Wireless Implantable Pressure Monitor for Conditional Bladder Neuromodulation.用于条件性膀胱神经调节的无线植入式压力监测器
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