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Measurement of implant electrode leads using time-domain reflectometry to predict the resonant length for MRI heating

机译:使用时域反射仪测量植入物电极引线,以预测MRI加热的共振长度

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摘要

Magnetic Resonance Imaging (MRI) machines can generate hazardous RF heating of patients with implanted neurostimulation leads. Consequently, most patients with these implants are contraindicated from having MRI scans. The level of RF heating has a strong dependence on lead length and is most severe when the length is close to a specific resonant length. Recent studies have shown that simple modifications to the lead construction and insulating material can alter the resonant length and significantly ameliorate this heating hazard, achieving MRI safety. We propose a technique using time domain reflectometry (TDR) to find the resonant length of an arbitrary lead such to minimise the amount of MRI machine time needed to find the length of highest heating. The results are compared with temperature measurements made in a 3-Tesla MRI machine and with a CW dipole radiator in the lab.
机译:磁共振成像(MRI)机器会对植入神经刺激导线的患者产生有害的RF加热。因此,大多数具有这些植入物的患者被禁止进行MRI扫描。 RF加热的程度对引线长度有很强的依赖性,当长度接近特定的谐振长度时,RF加热的程度最严重。最近的研究表明,对引线结构和绝缘材料进行简单的修改可以改变谐振长度并显着改善这种发热危险,从而实现MRI安全。我们提出了一种使用时域反射仪(TDR)来查找任意导线的谐振长度的技术,以最大程度地减少找到最高加热长度所需的MRI机器时间。将结果与实验室中使用3-Tesla MRI机器进行的温度测量以及使用CW偶极辐射器进行比较。

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