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核磁共振相控阵

The NMR phased array.

作者信息

Roemer P B, Edelstein W A, Hayes C E, Souza S P, Mueller O M

机构信息

GE Corporate Research and Development Center, Schenectady, New York 12301.

出版信息

Magn Reson Med. 1990 Nov;16(2):192-225. doi: 10.1002/mrm.1910160203.

Abstract

We describe methods for simultaneously acquiring and subsequently combining data from a multitude of closely positioned NMR receiving coils. The approach is conceptually similar to phased array radar and ultrasound and hence we call our techniques the "NMR phased array." The NMR phased array offers the signal-to-noise ratio (SNR) and resolution of a small surface coil over fields-of-view (FOV) normally associated with body imaging with no increase in imaging time. The NMR phased array can be applied to both imaging and spectroscopy for all pulse sequences. The problematic interactions among nearby surface coils is eliminated (a) by overlapping adjacent coils to give zero mutual inductance, hence zero interaction, and (b) by attaching low input impedance preamplifiers to all coils, thus eliminating interference among next nearest and more distant neighbors. We derive an algorithm for combining the data from the phased array elements to yield an image with optimum SNR. Other techniques which are easier to implement at the cost of lower SNR are explored. Phased array imaging is demonstrated with high resolution (512 x 512, 48-cm FOV, and 32-cm FOV) spin-echo images of the thoracic and lumbar spine. Data were acquired from four-element linear spine arrays, the first made of 12-cm square coils and the second made of 8-cm square coils. When compared with images from a single 15 x 30-cm rectangular coil and identical imaging parameters, the phased array yields a 2X and 3X higher SNR at the depth of the spine (approximately 7 cm).

摘要

我们描述了同时采集并随后合并来自多个紧密放置的核磁共振接收线圈数据的方法。该方法在概念上类似于相控阵雷达和超声,因此我们将我们的技术称为“核磁共振相控阵”。核磁共振相控阵在不增加成像时间的情况下,能在通常与身体成像相关的视野(FOV)范围内提供小表面线圈的信噪比(SNR)和分辨率。核磁共振相控阵可应用于所有脉冲序列的成像和光谱分析。通过以下方式消除了附近表面线圈之间存在问题的相互作用:(a)使相邻线圈重叠以产生零互感,从而实现零相互作用;(b)在所有线圈上连接低输入阻抗前置放大器,从而消除次近邻和更远邻线圈之间的干扰。我们推导了一种算法,用于合并来自相控阵元件的数据,以生成具有最佳信噪比的图像。还探索了其他以较低信噪比为代价但更易于实现的技术。通过对胸腰椎的高分辨率(512×512、48厘米视野和32厘米视野)自旋回波图像展示了相控阵成像。数据是从四元件线性脊柱阵列采集的,第一个阵列由12厘米见方的线圈组成,第二个由8厘米见方的线圈组成。与使用单个15×30厘米矩形线圈且成像参数相同的图像相比,相控阵在脊柱深度(约7厘米)处产生的信噪比高出2倍和3倍。

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