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Implementation of digital stimulus generation system for a passive programmable medical implant

机译:被动式可编程医疗植入物数字激励生成系统的实现

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Electrical stimulation by means of a medical implant is used as a means of restoring the lost functionality of different physiological organs. An active implant which works on a battery or a passive implant which works on power wirelessly transferred to it, could be used for this purpose. The future developments and applications will be in passive implants because of their smaller size and greater implantability. At the moment Manchester encoding is utilized as the data encoding scheme in medical implants. But this work proposes an alternative encoding scheme called Pulse Interval Encoding(PIE) for application in a passive implant. PIE offers the advantage of a simpler decoding methodology and greater power transferred to the implant. A PIE decoder that is resilient to data jitter to the tune of 2.5 μs and that works with clock frequency between 1.52 MHz and 1.76 MHz is implemented in this work. The electrical stimulation patterns that the implant generate will vary according to the application. This work also presents the design of an universal digital stimulus generator which can be programmed to generate the stimuli patterns for a variety of applications like pain relief and bladder control.
机译:通过医疗植入物的电刺激被用作恢复不同生理器官失去的功能的手段。为此,可以使用在电池上工作的有源植入物或通过无线方式传输到电源上的无源植入物。由于其较小的尺寸和更大的可植入性,未来的发展和应用将在无源植入物中。目前,曼彻斯特编码被用作医疗植入物中的数据编码方案。但是这项工作提出了一种替代编码方案,称为脉冲间隔编码(PIE),可用于无源植入物中。 PIE的优点是解码方法更简单,并且可以将更大的功率传输到植入物。在这项工作中,实现了一种PIE解码器,该解码器可抵抗2.5 µs的数据抖动,并以1.52 MHz至1.76 MHz的时钟频率工作。植入物产生的电刺激模式将根据应用而变化。这项工作还提出了一种通用数字刺激发生器的设计,可以对它进行编程以产生用于多种应用的刺激模式,例如缓解疼痛和控制膀胱。

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