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首页> 外文期刊>Journal of magnetic resonance >Highly accelerated acquisition and homogeneous image reconstruction with rotating RF coil array at 7 T-A phantom based study
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Highly accelerated acquisition and homogeneous image reconstruction with rotating RF coil array at 7 T-A phantom based study

机译:基于7 T-A幻像的旋转RF线圈阵列的高速采集和均匀图像重建

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Parallel imaging (PI) is widely used for imaging acceleration by means of coil spatial sensitivities associated with phased array coils (PACs). By employing a time-division multiplexing technique, a single-channel rotating radiofrequency coil (RRFC) provides an alternative method to reduce scan time. Strategically combining these two concepts could provide enhanced acceleration and efficiency. In this work, the imaging acceleration ability and homogeneous image reconstruction strategy of 4-element rotating radiofrequency coil array (RRFCA) was numerically investigated and experimental validated at 7 T with a homogeneous phantom. Each coil of RRFCA was capable of acquiring a large number of sensitivity profiles, leading to a better acceleration performance illustrated by the improved geometry-maps that have lower maximum values and more uniform distributions compared to 4- and 8-element stationary arrays. A reconstruction algorithm, rotating SENSitivity Encoding (rotating SENSE), was proposed to provide image reconstruction. Additionally, by optimally choosing the angular sampling positions and transmit profiles under the rotating scheme, phantom images could be faithfully reconstructed. The results indicate that, the proposed technique is able to provide homogeneous reconstructions with overall higher and more uniform signal-to-noise ratio (SNR) distributions at high reduction factors. It is hoped that, by employing the high imaging acceleration and homogeneous imaging reconstruction ability of RRFCA, the proposed method will facilitate human imaging for ultra high field MRI.
机译:并行成像(PI)通过与相控阵线圈(PAC)相关的线圈空间灵敏度广泛用于成像加速。通过采用时分复用技术,单通道旋转射频线圈(RRFC)提供了减少扫描时间的替代方法。从战略上将这两个概念结合起来可以提高加速和效率。在这项工作中,对4元件旋转射频线圈阵列(RRFCA)的成像加速能力和均质图像重建策略进行了数值研究,并在7 T下用均质体模进行了实验验证。 RRFCA的每个线圈都能够获取大量的灵敏度曲线,从而导致更好的加速性能,这是通过改进的几何图来说明的,与4和8元素固定阵列相比,该几何图具有更低的最大值和更均匀的分布。提出了一种旋转敏感度编码(rotating SENSE)的重建算法来提供图像重建。此外,通过在旋转方案下最佳选择角度采样位置和传输轮廓,可以忠实地重建幻像。结果表明,所提出的技术能够以较高的降低因子提供具有更高,更均匀的信噪比(SNR)分布的均匀重构。希望通过利用RRFCA的高成像加速度和均匀成像重建能力,该方法将有助于超高场MRI的人体成像。

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