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An impedance measurement analog front end for wirelessly bioimplantable applications

机译:用于无线生物植入应用的阻抗测量模拟前端

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This paper reports on design and implementation of an impedance measurement analog front end (AFE) for wirelessly powered medical electronic applications. Going through the literature on the implantable applications, it is understood that a common impedance value of 10 kΩ is agreed in terms of the human tissues. It is, however, also well known that such an impedance value could be varied toward 100 kΩ as a result of the variances in electrode-tissue interfacing, indicating internally physiological change or electrode failure. The variances in electrode-tissue interfacing also cause electrode with unequal charges in biphasic stimulation, damaging surrounding neurons. Proposed aims to overcome the potential problem, which is able to differentiate variances in impedance ranging from 10 kΩ to 100 kΩ. An impedance value exceeding 100 kΩ is considered electrode failure due to the malfunction of providing predefined current output in stimulator. The measured impedance can be backscattered to the external device through an integrated modulation technique.
机译:本文报告了用于无线医疗电子设备的阻抗测量模拟前端(AFE)的设计和实现。查阅有关可植入应用的文献,可以理解,就人体组织而言,通用阻抗值为10kΩ。但是,众所周知,由于电极-组织界面的变化,这种阻抗值可以朝100kΩ变化,表明内部生理变化或电极失效。电极组织界面的变化也会导致电极在双相刺激中电荷不均等,从而损害周围的神经元。提出的目的是克服潜在的问题,该问题能够区分从10kΩ到100 k impedance的阻抗变化。超过100kΩ的阻抗值被认为是电极故障,原因是在刺激器中无法提供预定义的电流输出。可以通过集成调制技术将测得的阻抗反向散射到外部设备。

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