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Wireless Ultra-Low-Power Implantable Sensor for Chronic Bladder Pressure Monitoring

机译:无线超低功耗植入的传感器慢性膀胱内压监测

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摘要

The wireless implantable/intracavity micromanometer (WIMM) system was designed to fulfill the unmet need for a chronic bladder pressure sensing device in urological fields such as urodynamics for diagnosis and neuromodulation for bladder control. Neuromodulation in particular would benefit from a wireless bladder pressure sensor which could provide real-time pressure feedback to an implanted stimulator, resulting in greater bladder capacity while using less power. The WIMM uses custom integrated circuitry, a MEMS transducer, and a wireless antenna to transmit pressure telemetry at a rate of 10 Hz. Aggressive power management techniques yield an average current draw of 9 μA from a 3.6-Volt micro-battery, which minimizes the implant size. Automatic pressure offset cancellation circuits maximize the sensing dynamic range to account for drifting pressure offset due to environmental factors, and a custom telemetry protocol allows transmission with minimum overhead. Wireless operation of the WIMM has demonstrated that the external receiver can receive the telemetry packets, and the low power consumption allows for at least 24 hours of operation with a 4-hour wireless recharge session.
机译:设计无线可植入/腔内微调计(WIMM)系统旨在满足泌尿外领域中慢性膀胱压力传感装置的未满足需要,例如膀胱控制诊断和神经调节的尿动力学。特别是,尤其是可以从无线膀胱压力传感器中受益,这可以为植入的刺激器提供实时压力反馈,从而在使用较少的动力时产生更大的膀胱容量。 WIMM使用自定义集成电路,MEMS换能器和无线天线以10 Hz的速率传输压力遥测。积极的电源管理技术从3.6伏微电池产生9μA的平均电流绘制,从而最大限度地减少植入物尺寸。自动压力偏移消除电路最大化传感动态范围,以解释由于环境因素导致的漂移压力偏移,以及自定义遥测协议允许以最小开销传输。 WIMM的无线操作已经证明外部接收器可以接收遥测数据包,低功耗允许使用4小时无线充电会话进行至少24小时操作。

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