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首页> 外文期刊>Frontiers in Physics >Analysis of an Integrated 8-Channel Tx/Rx Body Array for Use as a Body Coil in 7-Tesla MRI
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Analysis of an Integrated 8-Channel Tx/Rx Body Array for Use as a Body Coil in 7-Tesla MRI

机译:集成的8通道Tx / Rx人体阵列用作7-Tesla MRI人体线圈的分析

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Object In this work an 8-channel array integrated into the gap between the gradient coil and bore liner of a 7-Tesla whole-body magnet is presented that would allow a workflow closer to that of systems at lower magnetic fields that have a built-in body coil; this integrated coil is compared to a local 8-channel array built from identical elements placed directly on the patient. Materials and Methods SAR efficiency and the homogeneity of the right-rotating B1 field component (B_1^+) are investigated numerically and compared to the local array. Power efficiency measurements are performed in the MRI System. First in vivo gradient echo images are acquired with the integrated array. Results While the remote array shows a slightly better performance in terms of B_1^+ homogeneity, the power efficiency and the SAR efficiency are inferior to those of the local array: the transmit voltage has to be increased by a factor of 3.15 to achieve equal flip angles in a central axial slice. The g-factor calculations show a better parallel imaging g-factor for the local array. The field of view of the integrated array is larger than that of the local array. First in vivo images with the integrated array look subjectively promising. Conclusion Although some RF performance parameters of the integrated array are inferior to a tight-fitting local array, these disadvantages might be compensated by the use of amplifiers with higher power and the use of local receive arrays. In addition, the distant placement provides the potential to include more elements in the array design.
机译:对象在这项工作中,提出了一个8通道阵列,该阵列集成在7特斯拉全身磁体的梯度线圈和膛线之间的间隙中,该阵列将使工作流程更接近具有较低磁场强度的较低磁场系统的工作流程。在身体线圈;将该集成线圈与由直接放置在患者身上的相同元件构建的本地8通道阵列进行比较。材料和方法对SAR效率和右旋B1场分量(B_1 ^ +)的均匀性进行了数值研究,并与局部阵列进行了比较。功率效率测量在MRI系统中执行。首先使用集成阵列获取体内梯度回波图像。结果虽然远程阵列在B_1 ^ +同质性方面表现出稍好一些的性能,但功率效率和SAR效率却不如本地阵列:发射电压必须提高3.15倍才能实现相等的翻转中心轴向切片中的角度。 g因子计算显示局部数组具有更好的并行成像g因子。集成阵列的视场大于本地阵列的视场。首先,具有集成阵列的体内图像在主观上看起来很有希望。结论尽管集成阵列的某些RF性能参数不如紧密安装的本地阵列,但可以通过使用功率更高的放大器和使用本地接收阵列来弥补这些缺点。另外,遥远的位置提供了在阵列设计中包括更多元素的潜力。

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