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A 16-channel dual-row transmit array in combination with a 31-element receive array for human brain imaging at 9.4 T

机译:一个16通道双排发射阵列与31元件接收阵列组合,用于9.4 T.的人脑成像

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摘要

Purpose Arranging transmit array elements in multiple rows provides an additional degree of freedom to correct B1+ field inhomogeneities and to achieve whole-brain excitation at ultrahigh field strengths. Receive arrays shaped to the contours of the anatomy increase the signal-to-noise ratio of the image. In this work, the advantages offered by the transmit and receive array techniques are combined for human brain imaging at 9.4 T. Methods A 16-element dual-row transmit array and a 31-element receive array were developed. Based on an accurate numerical model of the transmit array, the deposited power was calculated for different head sizes and positions. The influence of the receive array on the transmit field was characterized. Parallel imaging performance and signal-to-noise ratio of the receive array were evaluated. Results On average, a two fold increase in signal-to-noise ratio was observed in the whole-brain volume when compared with a 16-channel elliptic microstrip transceiver array. The benefits of combining the two arrays, B1+ shimming in three directions and high receive sensitivity, are demonstrated with high-resolution in vivo images. Conclusion The dual-row transmit array provides whole-brain coverage at 9.4 T, which, in combination with the helmet-shaped receive array, is a valuable radio frequency configuration for ultra-high field magnetic resonance imaging of the human brain.
机译:目的排列在多个行中的发射阵列元件提供自由度以正确B1 +场不均匀性的附加度,并实现在超高场强全脑激发。接收成形为解剖结构的增加的图像的信噪比的轮廓阵列。在这项工作中,由发射和提供的优点接收阵列技术组合起来用于在9.4 T.方法采用16个元素的双行发射阵列人脑成像和一个31元件接收阵列被开发出来。基于发射阵列的精确数值模型,计算了不同的头部尺寸和位置的沉积功率。在发送字段接收阵列的影响进行表征。接收阵列的平行成像性能和信噪比进行评价。结果平均来说,在全脑体积中观察到信噪比的两个的增加当用一个16通道椭圆微带收发器阵列相比较。组合所述两个阵列,B1匀场+在三个方向上与高的好处接收灵敏度被证明具有高分辨率体内图像。结论双行发射阵列在9.4 T,其中,在与头盔状组合接收阵列,是用于人脑的超高场强磁共振成像的有价值射频配置提供全脑覆盖。

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