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一种用于高场成像的新型容积线圈的设计与测试。

The design and test of a new volume coil for high field imaging.

作者信息

Wen H, Chesnick A S, Balaban R S

机构信息

Laboratory of Cardiac Energetics, NHLBI, Bethesda, Maryland 20892.

出版信息

Magn Reson Med. 1994 Oct;32(4):492-8. doi: 10.1002/mrm.1910320411.

DOI:10.1002/mrm.1910320411
PMID:7997115
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2890274/
Abstract

A major problem in the development of high field (> 100 MHz) large volume (> 6000 cm3) MR coils is the interaction of the coil with the subject as well as the radiation loss to the environment. To reduce subject perturbation of the coil resonance modes, a volume coil that uses an array of freely rotating resonant elements radially mounted between two concentric cylinders was designed for operation at 170 MHz. Substantial electromagnetic energy is stored in the resonant elements outside the sample region without compromising the efficiency of the overall coil. This stored energy reduces the effect of the subject on the circuit and maintains a high Q, facilitating the tuning and matching of the coil. The unloaded Q of the coil is 680; when loaded with a head, it was 129. The ratio of 5.3 of the unloaded to loaded Q supports the notion that the efficiency of the coil was maintained in comparison with previous designs. The power requirement and signal-to-noise performance are significantly improved. The coil is tuned by a mechanism that imparts the same degree of rotation on all of the elements simultaneously, varying their degree of mutual coupling and preserving the overall coil symmetry. A thin radiofrequency shield is an integral part of the coil to reduce the radiation effect, which is a significant loss mechanism at high fields. MR images were collected at 4T using this coil design with high sensitivity and B1 homogeneity.

摘要

高场(>100MHz)大容积(>6000cm³)磁共振线圈开发中的一个主要问题是线圈与受检者之间的相互作用以及向环境的辐射损耗。为减少线圈共振模式下受检者的干扰,设计了一种容积线圈,该线圈使用一组径向安装在两个同心圆柱之间的自由旋转共振元件,可在170MHz下运行。大量电磁能量存储在样本区域外的共振元件中,而不会影响整个线圈的效率。这种存储的能量减少了受检者对电路的影响,并保持了高Q值,便于线圈的调谐和匹配。该线圈的空载Q值为680;加载头部时,Q值为129。空载与加载Q值之比为5.3,这支持了与先前设计相比该线圈效率得以保持的观点。功率需求和信噪比性能得到显著改善。该线圈通过一种机制进行调谐,该机制能同时使所有元件获得相同程度的旋转,改变它们的相互耦合程度并保持整个线圈的对称性。一个薄的射频屏蔽是线圈的一个组成部分,用于减少辐射效应,在高场中辐射效应是一种重要的损耗机制。使用这种线圈设计在4T条件下采集了具有高灵敏度和B1均匀性的磁共振图像。