涡流
波形
傅里叶变换
傅里叶分析
度量(数据仓库)
脉冲响应
残余物
计算机科学
脉冲(物理)
k-空间
参数化复杂度
算法
物理
核磁共振
计算物理学
数学分析
数学
电压
数据库
量子力学
作者
Marcus T. Alley,Gary H. Glover,Norbert J. Pelc
标识
DOI:10.1002/mrm.1910390411
摘要
Abstract This paper describes a technique for characterizing the gradient subsystem of a magnetic resonance (MR) system. The technique uses a Fourier‐transform analysis to directly measure the k ‐space trajectory produced by an arbitrary gradient waveform. In addition, the method can be easily extended to multiple dimensions and can be adapted to measuring residual gradient effects such as eddy currents. Several examples of gradient waveform and eddy‐current measurements are presented. Also, it is demonstrated how the eddy‐current measurements can be parameterized with an impulse‐response formalism for later use in system tuning. When compared to a peak‐fitting analysis, this technique provides a more direct extraction of the k ‐space measurements, which reduces the possibility of analysis error. This approach also has several advantages as compared to the conventional eddy‐current measurement technique, including the ability to measure very short time constant effects.
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