有效成像区域上梯度磁场变换的横向梯度线圈的数值设计

Chaoqun Niu , Hongyi Qu
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引用次数: 0

摘要

梯度线圈是磁共振成像(MRI)扫描仪的重要组成部分。为了实现高空间分辨率和成像速度,需要具有高转换率的高效梯度线圈。考虑到患者的安全性和舒适性,在实际应用中还需要考虑机械稳定性、声学噪声和周围神经刺激(PNS)。在我们之前的工作中,我们提出了一种具有圆柱-平面混合结构的高效全身梯度线圈组,它可以显著提高线圈的性能。在这项工作中,我们提出设计这种横向梯度线圈系统与变换的磁场梯度。通过上移梯度场的零点,所设计的新型y型梯度线圈可以提高电磁性能。由于线圈绕组排列更加均匀,新线圈的净转矩显著减小,在大多数测试频段产生的声压级(SPL)都较低。另一方面,采用旋转梯度磁场设计的新型横向梯度线圈在人体中产生的电场大大减少,这对于快速MR序列的使用具有重要意义。结果表明,利用变换的磁场梯度可以获得更安全、对患者友好的设计,这对实际应用至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Numerical design of transverse gradient coil with transformed magnetic gradient field over an effective imaging area

Numerical design of transverse gradient coil with transformed magnetic gradient field over an effective imaging area
Gradient coil is an essential component of a magnetic resonance imaging (MRI) scanner. To achieve high spatial resolution and imaging speed, a high-efficiency gradient coil with high slew rate is required. In consideration of the safety and comfort of the patient, the mechanical stability, acoustic noise and peripheral nerve stimulation (PNS) are also need to be concerned for practical use. In our previous work, a high-efficiency whole-body gradient coil set with a hybrid cylindrical-planar structure has been presented, which offers significantly improved coil performances. In this work, we propose to design this transverse gradient coil system with transformed magnetic gradient fields. By shifting up the zero point of gradient fields, the designed new Y-gradient coil could provide enhanced electromagnetic performances. With more uniform coil winding arrangement, the net torque of the new coil is significantly reduced and the generated sound pressure level (SPL) is lower at most tested frequency bands. On the other hand, the new transverse gradient coil designed with rotated magnetic gradient fields produces considerably reduced electric field in the human body, which is important for the use of rapid MR sequences. It's demonstrated that a safer and patient-friendly design could be obtained by using transformed magnetic gradient fields, which is critical for practical use.
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来源期刊
Magnetic Resonance Letters
Magnetic Resonance Letters Analytical Chemistry, Spectroscopy, Radiology and Imaging, Biochemistry, Genetics and Molecular Biology (General)
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