Wu Y, Chronik B A, Bowen C, Mechefske C K, Rutt B K
Department of Mechanical and Materials Engineering, University of Western Ontario, London, Ontario, Canada.
Magn Reson Med. 2000 Oct;44(4):532-6. doi: 10.1002/1522-2594(200010)44:4<532::aid-mrm6>3.0.co;2-q.
Both the acoustic and magnetic fluctuation frequency response functions for a Siemens AS25 body gradient coil inside a 4 Tesla whole-body MR system were measured and analyzed in this study. In an attempt to correlate the acoustic noise inside the gradient coil with magnetic field oscillations, triangular and trapezoidal gradient impulses of varying amplitudes and widths were used to excite the gradient coil. The acoustic and magnetic responses to these inputs were measured. The results show the existence of discrete resonances in both acoustic and uniform magnetic field fluctuation spectra, while gradient magnetic field fluctuation spectra show no such resonances. In addition, the dominant amplitude peaks in spectra fluctuate similarly with respect to trapezoidal gradient impulse flat-top widths. This implies that these phenomena are correlated, and that the trapezoidal impulse flat-top width may be used as a way to suppress both acoustic noise and uniform magnetic field oscillations.
在本研究中,对西门子AS25体梯度线圈在4特斯拉全身磁共振系统内的声学和磁波动频率响应函数进行了测量和分析。为了将梯度线圈内的声学噪声与磁场振荡相关联,使用了不同幅度和宽度的三角形和梯形梯度脉冲来激励梯度线圈。测量了对这些输入的声学和磁响应。结果表明,在声学和均匀磁场波动谱中都存在离散共振,而梯度磁场波动谱中没有此类共振。此外,谱中的主要幅度峰值相对于梯形梯度脉冲平顶宽度有类似的波动。这意味着这些现象是相关的,并且梯形脉冲平顶宽度可以用作抑制声学噪声和均匀磁场振荡的一种方法。