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MRI Heating Reduction for External Fixation Devices Using Absorption Material

机译:使用吸收材料的外固定装置的MRI加热减少

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This paper presents a novel approach to minimize the radio frequency (RF)-induced heating from external fixation devices under magnetic resonance imaging (MRI) procedure. With proper placement and selection of absorption material, one can alter the electromagnetic field and current distributions around and/or on medical devices so that the MRI RF field-induced heating can be reduced. The absorption-material-based RF heating reduction schemes are analyzed and validated. Numerical and experimental studies are conducted to illustrate the potentials of reducing the RF heating for external fixation devices. A design strategy based on response surface methodology is presented for material selection, and it is shown that absorption materials can significantly reduce the RF heating effects from 645 to 172 W/kg in terms of 1-g spatial-averaged SAR for the device under this investigation.
机译:本文提出了一种新颖的方法,以最小化在磁共振成像(MRI)程序下由外固定装置产生的射频(RF)引起的热量。通过正确放置和选择吸收材料,可以改变医疗设备周围和/或上方的电磁场和电流分布,从而可以减少MRI RF场引起的发热。分析并验证了基于吸收材料的RF降温方案。进行了数值和实验研究,以说明减少外部固定设备的RF发热的潜力。提出了一种基于响应面方法的设计策略进行材料选择,结果表明,在此条件下,器件的1-g空间平均SAR值,吸收材料可以将RF加热效应从645降低至172 W / kg。调查。

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