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Percutaneous Wireless Powering System for a Left Ventricular Assist Device (LVAD) with an Internal Backup Battery

机译:具有内部备用电池的左心室辅助设备(LVAD)的经皮无线电力系统

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This study deals with the analysis of an optimum configuration for a wireless powering system applied to a left ventricular assisted device (LVAD). The current models of LVAD are miniaturized pump that are attached directly to heart by mini-invasive technique and can be used to treat advanced heart pathologies. The pump is electrically driven by a DC brushless motor powered by an external battery connected to the motor by percutaneous driveline cable. This last is cause of many infections and should be eliminated. Aim of this work is the study of a wireless power transfer (WPT) system used to power the motor replacing the percutaneous driveline. Electrical performances, safety aspects and reliability of the system are all aspects of paramount importance. A backup battery integrated with the implanted secondary coil is also proposed. This solution permits to improve the system reliability with a minimum number of components that must be subcutaneously implanted.
机译:该研究涉及分析应用于左心室辅助装置(LVAD)的无线电力系统的最佳配置。目前的LVAD型号是小型化泵,通过微创技术直接连接到心脏,可用于治疗先进的心脏病。泵由由经皮传动线缆连接到电动机的外部电池供电的直流无刷电动机电驱动。最后是许多感染的原因,应该被淘汰。这项工作的目的是研究用于为电机供电的无线电力传输(WPT)系统更换经皮传动系。系统的电气性能,安全方面和可靠性是重要的重要方面。还提出了一种与植入的次级线圈集成的备用电池。该解决方案允许通过最小数量的组件来提高系统可靠性,这些组件必须被皮下植入。

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