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使用基于脉冲响应的预均衡技术校正任意磁场梯度波形。

Arbitrary magnetic field gradient waveform correction using an impulse response based pre-equalization technique.

机构信息

Department of Electrical and Computer Engineering, University of New Brunswick, 15 Dineen Drive, Fredericton, NB E3B 5A3, Canada; MRI Centre, Department of Physics, University of New Brunswick, 8 Bailey Drive, Fredericton, NB E3B 5A3, Canada.

Department of Electrical and Computer Engineering, University of New Brunswick, 15 Dineen Drive, Fredericton, NB E3B 5A3, Canada.

出版信息

J Magn Reson. 2014 Jan;238:70-6. doi: 10.1016/j.jmr.2013.11.003. Epub 2013 Nov 15.

Abstract

The time-varying magnetic fields used in magnetic resonance applications result in the induction of eddy currents on conductive structures in the vicinity of both the sample under investigation and the gradient coils. These eddy currents typically result in undesired degradations of image quality for MRI applications. Their ubiquitous nature has resulted in the development of various approaches to characterize and minimize their impact on image quality. This paper outlines a method that utilizes the magnetic field gradient waveform monitor method to directly measure the temporal evolution of the magnetic field gradient from a step-like input function and extracts the system impulse response. With the basic assumption that the gradient system is sufficiently linear and time invariant to permit system theory analysis, the impulse response is used to determine a pre-equalized (optimized) input waveform that provides a desired gradient response at the output of the system. An algorithm has been developed that calculates a pre-equalized waveform that may be accurately reproduced by the amplifier (is physically realizable) and accounts for system limitations including system bandwidth, amplifier slew rate capabilities, and noise inherent in the initial measurement. Significant improvements in magnetic field gradient waveform fidelity after pre-equalization have been realized and are summarized.

摘要

磁共振应用中时变的磁场会在研究样本和梯度线圈附近的导电结构上感应出涡流。这些涡流通常会导致 MRI 应用中图像质量的不理想。由于其普遍存在,已经开发出各种方法来表征和最小化它们对图像质量的影响。本文概述了一种利用磁场梯度波形监视器方法直接测量阶跃输入函数的磁场梯度的时变,并提取系统脉冲响应的方法。在假设梯度系统足够线性且时不变以允许系统理论分析的基本假设下,使用脉冲响应来确定预均衡(优化)输入波形,该波形在系统的输出端提供所需的梯度响应。已经开发了一种算法,该算法可以计算出预均衡的波形,该波形可以由放大器精确地再现(是物理上可实现的),并考虑到系统限制,包括系统带宽、放大器转换率能力以及初始测量中的固有噪声。已经实现了预均衡后磁场梯度波形保真度的显著提高,并进行了总结。

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