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A 32-Channel Head Coil Array with Circularly Symmetric Geometry for Accelerated Human Brain Imaging

机译:具有圆形对称几何形状的32通道头线圈阵列用于加速人脑成像

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摘要

The goal of this study is to optimize a 32-channel head coil array for accelerated 3T human brain proton MRI using either a Cartesian or a radial k-space trajectory. Coils had curved trapezoidal shapes and were arranged in a circular symmetry (CS) geometry. Coils were optimally overlapped to reduce mutual inductance. Low-noise pre-amplifiers were used to further decouple between coils. The SNR and noise amplification in accelerated imaging were compared to results from a head coil array with a soccer-ball (SB) geometry. The maximal SNR in the CS array was about 120% (1070 vs. 892) and 62% (303 vs. 488) of the SB array at the periphery and the center of the FOV on a transverse plane, respectively. In one-dimensional 4-fold acceleration, the CS array has higher averaged SNR than the SB array across the whole FOV. Compared to the SB array, the CS array has a smaller g-factor at head periphery in all accelerated acquisitions. Reconstructed images using a radial k-space trajectory show that the CS array has a smaller error than the SB array in 2- to 5-fold accelerations.
机译:这项研究的目标是使用笛卡尔或径向k空间轨迹优化32通道头部线圈阵列,以加速3T人脑质子MRI。线圈具有弯曲的梯形形状,并以圆对称(CS)几何形状排列。线圈被最佳重叠以减少互感。低噪声前置放大器用于进一步使线圈之间去耦。将加速成像中的SNR和噪声放大与具有足球(SB)几何形状的头线圈阵列的结果进行了比较。 CS阵列中的最大SNR分别为在横向平面上FOV的外围和中心处SB阵列的大约120%(1070对892)和62%(303对488)。在一维4倍加速中,在整个FOV中,CS阵列的平均SNR比SB阵列的平均SNR高。与SB阵列相比,CS阵列在所有加速采集中头部周围的g因子都较小。使用径向k空间轨迹重建的图像显示,在2至5倍的加速度下,CS阵列的误差小于SB阵列。

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