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Implantable LC passive resonance based therapeutic device for the treatment of neural disorder of renal (urinary bladder) system failure

机译:基于植入式LC被动共振的治疗装置,用于治疗肾(膀胱)系统神经疾病

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The paper presents a solution for the neural disorder of renal system failure. This paper describes an implantable therapeutic device based on LC passive resonance for the patients who are suffering from renal system disorder by providing the alternate solution to the renal diseases besides surgery and medication. As Functional Electrical Stimulation (FES) is used, the whole circuitry with the passive sensor will work on wireless energy transfer via resonance attached with the circuit which is the process of using low levels of electrical currents to the motor nerves of the sphincter muscle of the urinary bladder to respond to stimuli. In this paper, a working portable FES (using 555 timer IC) system with wireless circuitry is designed and demonstrated as a therapeutic device based on RLC series resonance using passive sensors unit. Further research should improve the circuit by introducing the design of a wearable or implantable bio-antenna with the capability of low to high frequency for very sensitive response and including the printing and the design of passive pressure sensor will add a new dimension of the future research for this project in the field of biomedical technology.
机译:本文提出了一种针对肾系统衰竭的神经疾病的解决方案。本文介绍了一种基于LC被动共振的可植入治疗设备,该方法通过为手术和药物治疗以外的肾脏疾病提供替代解决方案,为患有肾系统疾病的患者提供治疗。当使用功能性电刺激(FES)时,带有无源传感器的整个电路将通过与该电路相连的谐振进行无线能量传输,这是使用低水平电流流向大鼠括约肌运动神经的过程。膀胱对刺激有反应。在本文中,设计并运行了带有无线电路的便携式FES(使用555定时器IC)系统,并作为基于RLC串联谐振的无源传感器单元的治疗仪进行了演示。进一步的研究应通过引入可穿戴或可植入的生物天线的设计来改善电路,该天线具有从低到高频的能力以实现非常敏感的响应,并且包括印刷和无源压力传感器的设计将为未来的研究增加新的领域在生物医学技术领域的这个项目。

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