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Measuring RF-induced currents inside implants: Impact of device configuration on MRI safety of cardiac pacemaker leads

机译:测量植入物内部的射频感应电流:设备配置对心脏起搏器导联的mRI安全性的影响

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摘要

Radiofrequency (RF)-related heating of cardiac pacemaker leads is a serious concern in magnetic resonance imaging (MRI). Recent investigations suggest such heating to be strongly dependent on an implant's position within the surrounding medium, but this issue is currently poorly understood. In this study, phantom measurements of the RF-induced electric currents inside a pacemaker lead were performed to investigate the impact of the device position and lead configuration on the amount of MRI-related heating at the lead tip. Seven hundred twenty device position/lead path configurations were investigated. The results show that certain configurations are associated with a highly increased risk to develop MRI-induced heating, whereas various configurations do not show any significant heating. It was possible to precisely infer implant heating on the basis of current intensity values measured inside a pacemaker lead. Device position and lead configuration relative to the surrounding medium are crucial to the amount of RF-induced heating in MRI. This indicates that a considerable number of implanted devices may incidentally not develop severe heating in MRI because of their specific configuration in the body. Small variations in configuration can, however, strongly increase the risk for such heating effects, meaning that hazardous situations might appear during MRI.
机译:心脏起搏器导线的射频(RF)相关加热是磁共振成像(MRI)中的一个严重问题。最近的研究表明,这种加热在很大程度上取决于植入物在周围介质中的位置,但是目前对此问题知之甚少。在这项研究中,对起搏器导线内部的RF感应电流进行了幻像测量,以研究设备位置和导线配置对导线尖端MRI相关加热量的影响。研究了720个设备的位置/引线路径配置。结果表明,某些配置与发生MRI感应加热的风险高度相关,而各种配置没有显示任何明显的加热。根据起搏器导线内部测得的电流强度值,可以精确推断植入物的发热。装置相对于周围介质的位置和导线配置对MRI中RF感应的热量至关重要。这表明大量植入的设备可能会由于其在体内的特殊结构而在MRI中不产生严重的发热。但是,配置的微小变化会大大增加产生此类热效应的风险,这意味着在MRI期间可能会出现危险情况。

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