...
首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Demonstration of 2 mm Thick Microcontrolled Injectable Stimulators Based on Rectification of High Frequency Current Bursts
【24h】

Demonstration of 2 mm Thick Microcontrolled Injectable Stimulators Based on Rectification of High Frequency Current Bursts

机译:基于高频电流突发整流的2 mm厚微控制注射式刺激器演示

获取原文
获取原文并翻译 | 示例
           

摘要

Existing implantable stimulators use powering approaches that result in stiff and bulky systems or result in systems incapable of producing the current magnitudes required for neuromuscular stimulation. This hampers their use in neuroprostheses for paralysis. We previously demonstrated an electrical stimulation method based on electronic rectification of high-frequency (HF) current bursts. The implants act as rectifiers of HF current that flows through the tissues by galvanic coupling, transforming this current into low frequency current capable of performing neuromuscular stimulation. Here, we developed 2-mm-thick, semi-rigid, injectable and addressable stimulators made of off-the-shelf components and based on this method. The devices were tested in vitro to illustrate how they are powered by galvanic coupling. In addition they were tried in an animal model to demonstrate their ability to perform controlled electrical stimulation. The implants were deployed by injection into two antagonist muscles of an anesthetized rabbit and were addressed resulting in independent isometric contractions. Low frequency currents of 2 mA were delivered by the implants. The HF currents are safe in terms of unwanted electrostimulation and tissue heating according to standards. This indicates that the proposed electrical stimulation method will allow unprecedented levels of miniaturization for neuroprostheses.
机译:现有的植入式刺激器使用动力方法,该方法导致系统僵硬且笨重,或者导致系统无法产生神经肌肉刺激所需的电流幅度。这阻碍了它们在神经假肢瘫痪中的使用。我们先前演示了一种基于高频(HF)电流突发的电子整流的电刺激方法。植入物充当通过电流耦合流过组织的HF电流的整流器,将此电流转换为能够执行神经肌肉刺激的低频电流。在这里,我们根据这种方法开发了2毫米厚,半刚性,可注射和可寻址的刺激器,这些刺激器由现成的组件制成。对该设备进行了体外测试,以说明它们如何通过电流耦合供电。另外,他们在动物模型中进行了试验,以证明其执行受控电刺激的能力。通过将植入物注射到麻醉兔的两个拮抗肌中进行部署,并进行处理,从而导致独立的等距收缩。植入物传递了2 mA的低频电流。根据标准,就不必要的电刺激和组织加热而言,HF电流是安全的。这表明所提出的电刺激方法将允许神经假体达到前所未有的微型化水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号