Avdievich Nikolai I, Hetherington Hoby P
Department of Radiology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Magn Reson Med. 2004 Dec;52(6):1459-64. doi: 10.1002/mrm.20264.
The design and construction of a 4 T transverse electromagnetic (TEM) transmit/receive head coil and a four-channel phased array receive-only RF system are described. To enable both high-resolution imaging of the entire brain and high-resolution spectroscopic imaging, active PIN diode decoupling was used in both the TEM resonator and each surface coil in the array. This configuration allows for both transmission and reception from the volume coil as well as reception from the phased array. The surface coils were decoupled by overlapping the coils and using preamplifier decoupling. Since at high frequencies construction of a lumped element matching quarter wavelength transformer, an important component of the preamplifier decoupling, becomes difficult, a transmission line approach was used. The system was tested and compared to a TEM volume transmit/receive head coil. A four- to sixfold improvement in signal-to-noise ratio from the sensitive volume of the array was achieved.
本文描述了一个4T横向电磁(TEM)发射/接收头部线圈和一个四通道相控阵仅接收射频系统的设计与构建。为了实现对整个大脑的高分辨率成像以及高分辨率光谱成像,在TEM谐振器和阵列中的每个表面线圈中都采用了有源PIN二极管去耦。这种配置允许从体线圈进行发射和接收,以及从相控阵进行接收。通过重叠线圈并使用前置放大器去耦来使表面线圈去耦。由于在高频下构建集总元件匹配四分之一波长变压器(前置放大器去耦的一个重要组件)变得困难,因此采用了传输线方法。对该系统进行了测试,并与TEM体发射/接收头部线圈进行了比较。阵列敏感体积的信噪比提高了四到六倍。