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使用网格和共轭梯度设计并行激发 MRI 的 RF 脉冲的有效方法。

Efficient method to design RF pulses for parallel excitation MRI using gridding and conjugate gradient.

机构信息

Department of Electrical & Computer Engineering, Texas A & M University, Texas, USA.

出版信息

Quant Imaging Med Surg. 2014 Apr;4(2):87-92. doi: 10.3978/j.issn.2223-4292.2014.04.09.

Abstract

Parallel excitation (pTx) techniques with multiple transmit channels have been widely used in high field MRI imaging to shorten the RF pulse duration and/or reduce the specific absorption rate (SAR). However, the efficiency of pulse design still needs substantial improvement for practical real-time applications. In this paper, we present a detailed description of a fast pulse design method with Fourier domain gridding and a conjugate gradient method. Simulation results of the proposed method show that the proposed method can design pTx pulses at an efficiency 10 times higher than that of the conventional conjugate-gradient based method, without reducing the accuracy of the desirable excitation patterns.

摘要

并行激发(pTx)技术与多个发射通道已广泛应用于高磁场 MRI 成像中,以缩短射频脉冲持续时间和/或降低特定吸收率(SAR)。然而,对于实际的实时应用,脉冲设计的效率仍需要大幅提高。在本文中,我们介绍了一种基于傅里叶域网格和共轭梯度法的快速脉冲设计方法的详细描述。所提出方法的仿真结果表明,与传统的基于共轭梯度法相比,该方法的设计效率可提高 10 倍,而不会降低理想激发模式的准确性。

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