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首页> 外文期刊>Magnetic Resonance in Medicine >Design of a radiative surface coil array element at 7 T: The single-side adapted dipole antenna
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Design of a radiative surface coil array element at 7 T: The single-side adapted dipole antenna

机译:7 T时辐射表面线圈阵列元件的设计:单面自适应偶极天线

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Ultra high field MR imaging (≥7 T) of deeply located targets in the body is facing some radiofrequency-field related challenges: interference patterns, reduced penetration depth, and higher Specific Absorbtion Ratio (SAR) levels. These can be alleviated by redesigning the elements of the transmit or transceive array. This is because at these high excitation field (B1) frequencies, conventional array element designs may have become suboptimal. In this work, an alternative design approach is presented, regarding coil array elements as antennas. Following this approach, the Poynting vector of the element should be oriented towards the imaging target region. The single-side adapted dipole antenna is a novel design that fulfills this requirement. The performance of this design as a transmit coil array element has been characterized by comparison with three other, more conventional designs using finite difference time domain (FDTD) simulations and B measurements on a phantom. Results show that the B level at the deeper regions is higher while maintaining relatively low SAR levels. Also, the B field distribution is more symmetrical and more uniform, promising better image homogeneity. Eight radiative antennas have been combined into a belt-like surface array for prostate imaging. T1-weighted (T1W) and T2-weighted (T2W) volunteer images are presented along with B measurements to demonstrate the improved efficiency. Magn Reson Med, 2011. © 2011 Wiley Periodicals, Inc.
机译:人体深处目标的超高场MR成像(≥7 T)正面临一些与射频场相关的挑战:干扰模式,减小的穿透深度和更高的比吸收率(SAR)水平。可以通过重新设计发送或收发阵列的元素来缓解这些问题。这是因为在这些高激发场(B 1 )频率下,常规的阵列元件设计可能已变得次优。在这项工作中,提出了一种替代设计方法,将线圈阵列元件视为天线。按照这种方法,元素的Poynting向量应朝向成像目标区域。单侧自适应偶极天线是一种新颖的设计,可以满足这一要求。该设计作为发射线圈阵列元件的性能已通过与其他三种使用有限差分时域(FDTD)仿真和幻像上的B测量的传统设计进行比较来表征。结果表明,较深区域的B水平较高,而SAR相对较低。而且,B场分布更对称且更均匀,有望实现更好的图像均匀性。八个辐射天线已组合成用于前列腺成像的带状表面阵列。提出了T 1 加权(T1W)和T 2 加权(T2W)志愿者图像以及B测量值,以证明改进的效率。 Magn Reson Med,2011年。©2011 Wiley Periodicals,Inc.。

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