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首页> 外文期刊>Journal of Electromagnetic Analysis and Applications >Slice-Selective Transmit Array Pulses for Improvement in Excitation Uniformity and Reduction of SAR
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Slice-Selective Transmit Array Pulses for Improvement in Excitation Uniformity and Reduction of SAR

机译:改善激励均匀性和降低SAR的切片选择发送阵列脉冲

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摘要

To overcome challenges of inhomogeneous transmit B1 distribution and high specific energy absorption rate (SAR) in MRI, we compare slice-selective array-optimized composite pulse and RF shimming designed to both improve B1 uniformity and reduce SAR using an 8-channel transmit head array loaded with a head model at various RF pulse excitation times, and compare results with standard quadrature voltage distribution at 3T (128 MHz) and 7T (300 MHz). The excitation uniformity was estimated throughout the 3D brain region and SAR was calculated for the whole head. The optimized composite pulse could produce significantly better homogeneity and significantly better homogeneity when SAR was not constrained, and both significantly better homogeneity and lower SAR when the pulse duration was allowed to be twice that of the quadrature or RF shimmed pulse. When the total pulse durations were constrained to the same length, the relative advantages of the optimized composite pulse for producing better homogeneity and lower SAR simultaneously were diminished. Using the optimization results, the slice-selective composite pulse sequence was implemented on a 3D MRI simulator currently under development, and showed both effective slice selection and improvement in excitation uniformity compared to a conventional quadrature driving method.
机译:为了克服MRI中不均匀的发射B1分布和高比能量吸收率(SAR)的挑战,我们比较了采用8通道发射头阵列优化切片选择阵列优化复合脉冲和RF匀场以提高B1均匀性并降低SAR的挑战在各种RF脉冲激励时间加载一个头部模型,并将结果与​​3T(128 MHz)和7T(300 MHz)的标准正交电压分布进行比较。估计整个3D脑区域的激发均匀性,并计算整个头部的SAR。当不限制SAR时,优化的复合脉冲可以产生更好的同质性和同质性,并且当允许脉冲持续时间为正交脉冲或RF匀场脉冲的两倍时,均质性更好,SAR更低。当将总脉冲持续时间限制为相同长度时,优化的复合脉冲同时产生更好的均匀性和更低的SAR的相对优势就会减弱。利用优化结果,在当前正在开发的3D MRI模拟器上实现了切片选择复合脉冲序列,与传统的正交驱动方法相比,该切片选择复合脉冲序列显示了有效的切片选择和激励均匀性的改善。

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