首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Intracardiac Turbines Suitable for Catheter-Based Implantation—An Approach to Power Battery and Leadless Cardiac Pacemakers?
【24h】

Intracardiac Turbines Suitable for Catheter-Based Implantation—An Approach to Power Battery and Leadless Cardiac Pacemakers?

机译:适用于基于导管的植入的齿状涡轮机 - 一种电动电池和无引用心脏起搏器的方法?

获取原文
获取原文并翻译 | 示例
       

摘要

Objective: Cardiac pacemakers are powered by batteries, which become exhausted after a few years. This is a problem in particular for leadless pacemakers as they are difficult to explant. Thus, autonomous devices powered by energy harvesters are desired. Methods: We developed an energy harvester for endocardial implantation. The device contains a microgenerator to convert a flexible turbine runner's rotation into electrical energy. The turbine runner is driven by the intracardiac blood flow; a magnetic coupling allows hermetical sealing. The energy harvester has a volume of 0.34 cm(3) and a weight of 1.3 g. Computational simulations were performed to assess the hemodynamic impact of the implant. The device was studied on a mock circulation and an in vivo trial was performed in a domestic pig. Results: In this article, we show that an energy harvester with a 2-bladed 14-mm-diameter turbine runner delivers 10.2 +/- 4.8 mu W under realistic conditions (heart rate 80/min, stroke volume 75 ml) on the bench. An increased output power (>80 mu W) and power density (237.1 mu W/cm(3)) can be achieved by higher stroke volumes, increased heart rates, or larger turbine runners. The device was successfully implanted in vivo. Conclusion: The device is the first flow-based energy harvester suitable for catheter-based implantation and provides enough energy to power a leadless pacemaker. Significance: The high power density, the small volume, and the flexible turbine runner blades facilitate the integration of the energy harvester in a pacemaker. This would allow overcoming the need for batteries in leadless pacemakers.
机译:目的:心脏起搏器由电池供电,几年后变得疲惫。这是一个针对无侵扰的起搏器的问题,因为它们难以消除。因此,需要由能量收割机提供动力的自主设备。方法:我们开发了一种用于心内膜植入的能量收割机。该装置包含微生物器,可将柔性涡轮转运器的旋转转换成电能。涡轮跑步器由心内血流驱动;磁耦合允许密封密封。能量收割机的体积为0.34cm(3)和重量为1.3g。进行计算模拟以评估植入物的血流动力学影响。该器件在嘲笑循环上进行了研究,在国内猪中进行体内试验。结果:在本文中,我们展示了一个带2-叶片14毫米直径涡轮流道的能量收割机在工作台(心率80 / min,行程第75 ML)下提供10.2 +/- 4.8亩。 。通过更高的中风卷,增加的心率或更大的涡轮机跑步,可以实现增加的输出功率(>80μm)和功率密度(237.1μW/ cm(3))。该装置成功植入体内。结论:该装置是适用于基于导管的植入的第一个基于流的能量收割机,并提供足够的能量来为无侵扰的起搏器供电。意义:高功率密度,较小的体积和柔性涡轮车道叶片促进了能量收割机在起搏器中的整合。这将允许克服对无侵扰起搏器的电池的需求。

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