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磁共振波谱学中阵列线圈的理论与应用

Theory and application of array coils in MR spectroscopy.

作者信息

Wright S M, Wald L L

机构信息

Department of Electrical Engineering, Texas A&M University, College Station, USA.

出版信息

NMR Biomed. 1997 Dec;10(8):394-410. doi: 10.1002/(sici)1099-1492(199712)10:8<394::aid-nbm494>3.0.co;2-0.

Abstract

The theory and application of array coils are reviewed in the context of phased array spectroscopy. The optimization of the signal-to-noise ratio from an array of coils is developed by considering the efficiency of a phased array transmit coil. This approach avoids the need to consider noise correlation, and should be useful in future considerations of transmit phased array coils for MR spectroscopy. Methods to characterize array coil performance, including fields and coupling are briefly summarized, along with methods to minimize the effects of mutual inductance. The signal-to-noise advantages of array coils over single coils are examined for both planar and cylindrical arrays. Numerical simulations of planar arrays of 2 x 2, 4 x 4 and 8 x 8 elements and constant overall dimension are compared to a single coil of the same size. The results demonstrate a significant improvement in sensitivity near the array coil. Although the benefits of the array decrease as a function of distance from the array, the array sensitivity never drops below that of a single coil with the same overall dimensions, or that of a single element of the array. Similar results are obtained for a sixteen element cylindrical array, which is compared to a standard quadrature birdcage coil using both computational methods and phantom measurements. The phased array techniques reviewed are demonstrated with proton spectroscopic images of the brain.

摘要

本文在相控阵光谱学的背景下,综述了阵列线圈的理论与应用。通过考虑相控阵发射线圈的效率,对阵列线圈的信噪比进行了优化。这种方法避免了考虑噪声相关性的需要,并且在未来用于磁共振光谱学的发射相控阵线圈的研究中应该会很有用。简要总结了表征阵列线圈性能的方法,包括场和耦合,以及最小化互感效应的方法。研究了阵列线圈相对于单一线圈在平面和圆柱形阵列中的信噪比优势。对2×2、4×4和8×8元件且总体尺寸恒定的平面阵列进行数值模拟,并与相同尺寸的单一线圈进行比较。结果表明,阵列线圈附近的灵敏度有显著提高。尽管阵列的优势随着与阵列距离的增加而降低,但阵列灵敏度从未低于相同总体尺寸的单一线圈或阵列单个元件的灵敏度。对于十六元件圆柱形阵列也获得了类似的结果,通过计算方法和模型测量将其与标准正交鸟笼线圈进行了比较。本文所综述的相控阵技术通过脑部质子光谱图像得到了验证。

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