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一款用于3T磁共振成像的24通道头部线圈的设计与测试。

Design and testing of a 24-channel head coil for MR imaging at 3 T.

作者信息

Li Ye, Lee Jo, Zhang Lei, Chen Qiaoyan, Tie Changjun, Luo Chao, Zhang Xiaoliang, Liang Dong, Liu Xin, Zheng Hairong

机构信息

Lauterbur Imaging Research Center, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China; Shenzhen Key Laboratory for MRI, Shenzhen 518055, China.

Department of Radiology and Biomedical Imaging, University of California San Francisco, San Francisco, CA 94158, USA; UCSF/UC Berkeley Joint Graduate Group in Bioengineering, San Francisco, CA 94158, USA.

出版信息

Magn Reson Imaging. 2019 May;58:162-173. doi: 10.1016/j.mri.2019.01.020. Epub 2019 Jan 23.

Abstract

PURPOSE

To offer the new head coil option (with a lower channel count) of an RF coil array that provides comparable performance to the commercial 32-channel head coil.

METHODS

The coil system comprised an upper shield (ten channels) and bottom section (fourteen channels). Signal-to-noise ratio (SNR) values for 2D unaccelerated imaging and the g-factor with an acceleration factor of 2-4 were evaluated in a phantom study. SNR performance and human brain and intracranial vessel wall imaging were conducted as part of the in vivo study. Both studies were conducted using the commercial head coil on the Siemens Tim Trio 3 T system for comparison.

RESULTS

In the phantom study, the new head coil had an 8% higher SNR than the commercial head coil and demonstrated less than a 1% difference in the g-factor with the acceleration factor 2-4 in the right-to-left and anterior-to-posterior directions. In the in vivo study, the performance matched the results seen in the phantom study and showed high reproducibility in several human experiments. Structural images of the brain and intracranial vessel wall with an isotropic spatial resolution of 0.5 mm can be acquired with the new head coil.

CONCLUSION

This study demonstrates that the new head coil is capable of providing good SNR performance in both phantom and human experiments, can achieve similar acceleration ability compared to the commercial head coil, and is capable of obtaining brain and intracranial vessel wall images.

摘要

目的

提供一种射频线圈阵列的新头部线圈选项(通道数较少),其性能与商用32通道头部线圈相当。

方法

线圈系统包括上部屏蔽层(10个通道)和底部部分(14个通道)。在体模研究中评估了二维非加速成像的信噪比(SNR)值以及加速因子为2至4时的g因子。作为体内研究的一部分,进行了SNR性能以及人脑和颅内血管壁成像。两项研究均使用西门子Tim Trio 3T系统上的商用头部线圈进行比较。

结果

在体模研究中,新头部线圈的SNR比商用头部线圈高8%,并且在左右和前后方向上,加速因子为2至4时g因子的差异小于1%。在体内研究中,性能与体模研究结果相符,并且在多项人体实验中显示出高重现性。使用新头部线圈可以采集各向同性空间分辨率为0.5毫米的脑和颅内血管壁的结构图像。

结论

本研究表明,新头部线圈在体模和人体实验中均能提供良好的SNR性能,与商用头部线圈相比可实现相似的加速能力,并且能够获得脑和颅内血管壁图像。

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