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用于7.0T心脏磁共振成像的模块化32通道收发线圈阵列。

Modular 32-channel transceiver coil array for cardiac MRI at 7.0T.

作者信息

Graessl Andreas, Renz Wolfgang, Hezel Fabian, Dieringer Matthias A, Winter Lukas, Oezerdem Celal, Rieger Jan, Kellman Peter, Santoro Davide, Lindel Tomasz D, Frauenrath Tobias, Pfeiffer Harald, Niendorf Thoralf

机构信息

Berlin Ultrahigh Field Facility, Max-Delbrueck-Center for Molecular Medicine, Berlin, Germany.

出版信息

Magn Reson Med. 2014 Jul;72(1):276-90. doi: 10.1002/mrm.24903. Epub 2013 Jul 31.

Abstract

PURPOSE

To design and evaluate a modular transceiver coil array with 32 independent channels for cardiac MRI at 7.0T.

METHODS

The modular coil array comprises eight independent building blocks, each containing four transceiver loop elements. Numerical simulations were used for B1 (+) field homogenization and radiofrequency (RF) safety validation. RF characteristics were examined in a phantom study. The array's suitability for accelerated high spatial resolution two-dimensional (2D) FLASH CINE imaging of the heart was examined in a volunteer study.

RESULTS

Transmission field adjustments and RF characteristics were found to be suitable for the volunteer study. The signal-to-noise intrinsic to 7.0T together with the coil performance afforded a spatial resolution of 1.1 × 1.1 × 2.5 mm(3) for 2D CINE FLASH MRI, which is by a factor of 6 superior to standardized CINE protocols used in clinical practice at 1.5T. The 32-channel transceiver array supports one-dimensional acceleration factors of up to R = 4 without impairing image quality significantly.

CONCLUSION

The modular 32-channel transceiver cardiac array supports accelerated and high spatial resolution cardiac MRI. The array is compatible with multichannel transmission and provides a technological basis for future clinical assessment of parallel transmission techniques at 7.0T.

摘要

目的

设计并评估一款用于7.0T心脏磁共振成像(MRI)的具有32个独立通道的模块化收发线圈阵列。

方法

该模块化线圈阵列由八个独立模块组成,每个模块包含四个收发环形元件。采用数值模拟进行B1(+)场均匀化和射频(RF)安全性验证。在体模研究中检测RF特性。在志愿者研究中检测该阵列对心脏加速高空间分辨率二维(2D)快速低角度激发稳态自由进动(FLASH)电影成像的适用性。

结果

发现传输场调整和RF特性适用于志愿者研究。7.0T的固有信噪比与线圈性能相结合,对于2D FLASH MRI可实现1.1×1.1×2.5 mm³的空间分辨率,比1.5T临床实践中使用的标准化电影成像协议高6倍。32通道收发阵列支持高达R = 4的一维加速因子,且不会显著损害图像质量。

结论

模块化32通道收发心脏阵列支持加速和高空间分辨率心脏MRI。该阵列与多通道传输兼容,为未来7.0T并行传输技术的临床评估提供了技术基础。

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