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Design and Evaluation of Potentiometric Principles for Bladder Volume Monitoring: A Preliminary Study

机译:膀胱体积监测电位计原理的设计和评估:初步研究

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摘要

Recent advances in microelectronics and wireless transmission technology have led to the development of various implantable sensors for real-time monitoring of bladder conditions. Although various sensing approaches for monitoring bladder conditions were reported, most such sensors have remained at the laboratory stage due to the existence of vital drawbacks. In the present study, we explored a new concept for monitoring the bladder capacity on the basis of potentiometric principles. A prototype of a potentiometer module was designed and fabricated and integrated with a commercial wireless transmission module and power unit. A series of in vitro pig bladder experiments was conducted to determine the best design parameters for implementing the prototype potentiometric device and to prove its feasibility. We successfully implemented the potentiometric module in a pig bladder model in vitro, and the error of the accuracy of bladder volume detection was <±3%. Although the proposed potentiometric device was built using a commercial wireless module, the design principles and animal experience gathered from this research can serve as a basis for developing new implantable bladder sensors in the future.
机译:微电子学和无线传输技术的最新进展已导致开发用于实时监测膀胱状况的各种植入式传感器。尽管已经报道了用于监视膀胱状况的各种感测方法,但是由于存在重大缺陷,大多数这种传感器仍处于实验室阶段。在本研究中,我们探索了一种基于电位计原理监测膀胱容量的新概念。设计并制造了电位计模块的原型,并将其与商用无线传输模块和电源单元集成在一起。进行了一系列体外猪膀胱实验,以确定实现原型电位计装置的最佳设计参数,并证明其可行性。我们在体外成功地在猪膀胱模型中实现了电位模块,膀胱体积检测准确性的误差<±3%。尽管建议的电位计设备是使用商用无线模块构建的,但是从这项研究中收集的设计原理和动物经验可以作为将来开发新的植入式膀胱传感器的基础。

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