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An Asymmetric Birdcage Coil for Small-animal MR Imaging at 7T

机译:用于7T小动物MR成像的不对称鸟笼线圈

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摘要

The birdcage (BC) coil is currently being utilized for uniform radiofrequency (RF) transmit/receive (Tx/Rx) or Tx-only configuration in many magnetic resonance (MR) imaging applications, but insufficient magnetic flux (|B1|) density and their non-uniform distribution still exists in high-field (HF) environments. We demonstrate that the asymmetric birdcage (ABC) transmit/receive (Tx/Rx) volume coil, which is a modified standard birdcage (SBC) coil with the end ring split into two halves, is suitable for improving the |B1| sensitivity in 7T small-animal MR imaging. Cylindrical SBC and ABC coils with 35 mm diameter were constructed and bench tested for mouse body MR imaging at 300 MHz using a 7T scanner. To assess the ABC coil performance, computational electromagnetic (EM) simulation and 7T MR experiment were performed by using a cylindrical phantom and in vivo mouse body and quantitatively compared with the SBC coil in terms of |B1| distribution, RF transmit (|B1+|) field, and signal-to-noise ratio (SNR). The bench measurements of the two BC coils are similar, yielding a quality value (Q-value) of 74.42 for the SBC coil and 77.06 for the ABC coil. The computational calculation results clearly show that the proposed ABC coil offers superior |B1| field and |B1+| field sensitivity in the central axial slice compared with the SBC coil. There was also high SNR and uniformly distributed flip angle (FA) under the loaded condition of mouse body in the 7T experiment. Although ABC geometry allows a further increase in the |B1| field and |B1+| field sensitivity in only the central axial slice, the geometrical modification of the SBC coil can make a high performance RF coil feasible in the central axial slice and also make target imaging possible in the diagonal direction.
机译:目前,在许多磁共振(MR)成像应用中,鸟笼(BC)线圈用于统一的射频(RF)发射/接收(Tx / Rx)或仅Tx构造,但磁通量(| B1 |)密度和它们的不均匀分布在高场(HF)环境中仍然存在。我们证明非对称鸟笼(ABC)发射/接收(Tx / Rx)体积线圈是一种改进的标准鸟笼(SBC)线圈,其端环分为两半,适用于改善| B1 |。 7T小动物MR成像的敏感性。构造了直径为35 mm的圆柱形SBC和ABC线圈,并使用7T扫描仪进行了300 MHz的小鼠体MR成像的台式测试。为了评估ABC线圈的性能,使用圆柱体模和体内小鼠体进行了计算电磁(EM)模拟和7T MR实验,并根据| B1 |与SBC线圈进行了定量比较。分布,RF发射(| B1 + |)字段和信噪比(SNR)。两个BC线圈的工作台测量值相似,SBC线圈的质量值(Q值)为74.42,ABC线圈的质量值为77.06。计算结果清楚地表明,所提出的ABC线圈具有更好的| B1 |。字段和| B1 + |与SBC线圈相比,中心轴向切片的磁场灵敏度更高。在7T实验中,在小鼠身体的负载条件下,SNR也很高,并且翻转角(FA)均匀分布。尽管ABC几何形状允许| B1 |进一步增加字段和| B1 + | SBC线圈的几何修改可以使高性能RF线圈在中心轴向切片中可行,并且仅在中心轴向切片中实现场灵敏度,并且还可以在对角线方向上进行目标成像。

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