Woo Myung Kyun, Delabarre Lance, Waks Matt, Lee Jingu, Lagore Russell Luke, Jungst Steve, Grant Andrea, Eryaman Yigitcan, Ugurbil Kamil, Adriany Gregor
IEEE Trans Med Imaging. 2021 Apr;40(4):1147-1156. doi: 10.1109/TMI.2020.3047354. Epub 2021 Apr 1.
Multi-element transmit arrays with low peak 10 g specific absorption rate (SAR) and high SAR efficiency (defined as ( [Formula: see text]SAR [Formula: see text] are essential for ultra-high field (UHF) magnetic resonance imaging (MRI) applications. Recently, the adaptation of dipole antennas used as MRI coil elements in multi-channel arrays has provided the community with a technological solution capable of producing uniform images and low SAR efficiency at these high field strengths. However, human head-sized arrays consisting of dipole elements have a practical limitation to the number of channels that can be used due to radiofrequency (RF) coupling between the antenna elements, as well as, the coaxial cables necessary to connect them. Here we suggest an asymmetric sleeve antenna as an alternative to the dipole antenna. When used in an array as MRI coil elements, the asymmetric sleeve antenna can generate reduced peak 10 g SAR and improved SAR efficiency. To demonstrate the advantages of an array consisting of our suggested design, we compared various performance metrics produced by 16-channel arrays of asymmetric sleeve antennas and dipole antennas with the same dimensions. Comparison data were produced on a phantom in electromagnetic (EM) simulations and verified with experiments at 10.5 Tesla (T). The results produced by the 16-channel asymmetric sleeve antenna array demonstrated 28 % lower peak 10 g SAR and 18.6 % higher SAR efficiency when compared to the 16-channel dipole antenna array.
具有低峰值10克特定吸收率(SAR)和高SAR效率(定义为[公式:见原文]SAR[公式:见原文])的多元素发射阵列对于超高场(UHF)磁共振成像(MRI)应用至关重要。最近,用作多通道阵列中MRI线圈元件的偶极天线的适配为该领域提供了一种能够在这些高场强下产生均匀图像且SAR效率低的技术解决方案。然而,由于天线元件之间的射频(RF)耦合以及连接它们所需的同轴电缆,由偶极元件组成的人头尺寸阵列在可使用的通道数量上存在实际限制。在此,我们建议使用不对称套筒天线作为偶极天线的替代方案。当在阵列中用作MRI线圈元件时,不对称套筒天线可降低峰值10克SAR并提高SAR效率。为了证明由我们建议的设计组成的阵列的优势,我们比较了由相同尺寸的16通道不对称套筒天线阵列和偶极天线阵列产生的各种性能指标。比较数据是在电磁(EM)模拟中的体模上产生的,并在10.5特斯拉(T)下通过实验进行了验证。与16通道偶极天线阵列相比,16通道不对称套筒天线阵列产生的结果表明峰值10克SAR降低了28%,SAR效率提高了18.6%。