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1.5T下的31P/1H WALTZ - 4宽带去耦:复合脉冲的不同版本以及使用表面线圈时的后果

31P/1H WALTZ-4 broadband decoupling at 1.5 T: different versions of the composite pulse and consequences when using a surface coil.

作者信息

Widmaier S, Breuer J, Jung W I, Dietze G J, Lutz O

机构信息

Hypertension and Diabetes Research Unit, Max Grundig Clinic, Bühl, Germany.

出版信息

Magn Reson Imaging. 1998 Sep;16(7):845-9. doi: 10.1016/s0730-725x(98)00003-4.

DOI:10.1016/s0730-725x(98)00003-4
PMID:9811149
Abstract

Two derivatives of the wideband alternating-phase low-power technique for zero-residual splitting (WALTZ)-4 decoupling sequence for broadband decoupling named WALTZ-4a and WALTZ-4b were compared for their proton decoupling performance in 31P nuclear magnetic resonance (NMR) spectroscopy using a Siemens Magnetom SP 1.5 T whole-body imager. Version WALTZ-4a originally implemented by the manufacturer doubles and triples the transmitter amplitude of the 90 degrees pulse to achieve the 180 degrees and 270 degrees flip angle required for one composite pulse R in the WALTZ sequence. WALTZ-4b follows the sequence reported from Shaka et al. and leaves the transmitter amplitude constant but increases the durations of the 180 degrees and 270 degrees pulses. The decoupling performance of WALTZ-4b is superior because it requires less transmitter power and, therefore, it is advantageous in all in vivo studies where a low specific absorption rate is desired. When WALTZ-4 is used in combination with a surface coil for transmission the theoretically required flip angles cannot be achieved in the entire sensitive volume of the coil. The decoupling performance was therefore investigated at lower and higher flip angles. Again, WALTZ-4b is advantageous and provides, in certain ranges that are off-resonant from the decoupling frequency, a good decoupling quality even for flip angles that are only 60% of the theoretically required.

摘要

使用西门子Magnetom SP 1.5 T全身成像仪,比较了用于宽带去耦的零残留分裂宽带交替相位低功率技术(WALTZ)-4去耦序列的两种衍生物WALTZ-4a和WALTZ-4b在31P核磁共振(NMR)光谱中的质子去耦性能。制造商最初实现的WALTZ-4a版本将90度脉冲的发射机幅度加倍和三倍,以实现WALTZ序列中一个复合脉冲R所需的180度和270度翻转角。WALTZ-4b遵循Shaka等人报道的序列,保持发射机幅度不变,但增加180度和270度脉冲的持续时间。WALTZ-4b的去耦性能更优越,因为它需要的发射机功率更低,因此,在所有需要低比吸收率的体内研究中都具有优势。当WALTZ-4与表面线圈结合用于传输时,在整个线圈敏感体积内无法实现理论上所需的翻转角。因此,在较低和较高的翻转角下研究了去耦性能。同样,WALTZ-4b具有优势,并且在与去耦频率失谐的某些范围内,即使对于仅为理论所需翻转角60%的翻转角,也能提供良好的去耦质量。

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