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Conceptualization, design and simulation of a hybrid antenna system as a simultaneous RF hyperthermia applicator at 600 MHz and RF coil for Magnetic Resonance Imaging at 3 Tesla

机译:混合天线系统的概念化,设计和仿真,作为600 MHz的同时射频热疗器和用于3特斯拉磁共振成像的射频线圈

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This paper presents the conceptualization, design and simulation of a hybrid multi-frequency antenna system for Radio Frequency (RF) hyperthermia and Magnetic Resonance Imaging (MRI) applications with ultra-sharp hotspot. Two different bowtie antenna arrays have been designed, simulated and integrated. The first antenna array is designed as an RF coil for MR imaging. It is optimized to generate a highly homogeneous transmit equation field and is intended for 3 T MRI systems. This corresponds to a frequency of 128 MHz. The second array aims to induce heat by accumulating the electromagnetic energy at one location thereby forming a hotspot. The operating frequency of the second system is 600 MHz. The computed homogeneity of the B1+ field generated by the imaging antennas shows similar values compared to a birdcage coil at the same frequency. The size of the hotspot generated by the heating subsystem was 26 ?? 26 ?? 93mm3. The heating produced by the MR imaging antennas was negligible, compared to the RF hyperthermia applicator.
机译:本文介绍了用于具有超锐利热点的射频(RF)热疗和磁共振成像(MRI)应用的混合多频天线系统的概念,设计和仿真。已经设计,模拟和集成了两个不同的领结天线阵列。第一天线阵列被设计为用于MR成像的RF线圈。它经过优化可生成高度均匀的传输方程场,适用于3 T MRI系统。这对应于128 MHz的频率。第二阵列旨在通过在一个位置处累积电磁能从而形成热点来感应热量。第二个系统的工作频率为600 MHz。与相同频率的鸟笼线圈相比,由成像天线生成的B1 +场的计算均匀度显示出相似的值。加热子系统产生的热点大小为26 ??。 26 ?? 93毫米与RF热疗仪相比,MR成像天线产生的热量可以忽略不计。

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