IEEE Trans Biomed Eng. 2018 Apr;65(4):911-920. doi: 10.1109/TBME.2017.2725962. Epub 2017 Jul 13.
In magnetic resonance imaging, the stream function based method is commonly used in the design of gradient coils. However, this method can be prone to errors associated with the discretization of continuous current density and wire connections. In this paper, we propose a novel gradient coil design scheme that works directly in the wire space, avoiding the system errors that may appear in the stream function approaches. Specifically, the gradient coil pattern is described with dedicated spiral functions adjusted to allow the coil to produce the required field gradients in the imaging area, minimal stray field, and other engineering terms. The performance of a designed spiral gradient coil was compared with its stream-function counterpart. The numerical evaluation shows that when compared with the conventional solution, the inductance and resistance was reduced by 20.9 and 10.5%, respectively. The overall coil performance (evaluated by the figure of merit (FoM)) was improved up to 26.5% for the x -gradient coil design; for the z-gradient coil design, the inductance and resistance were reduced by 15.1 and 6.7% respectively, and the FoM was increased by 17.7%. In addition, by directly controlling the wire distributions, the spiral gradient coil design was much sparser than conventional coils.
在磁共振成像中,基于流函数的方法常用于梯度线圈的设计。然而,这种方法可能容易受到与连续电流密度离散化和导线连接相关的误差的影响。在本文中,我们提出了一种新颖的梯度线圈设计方案,该方案直接在导线空间中工作,避免了流函数方法中可能出现的系统误差。具体来说,梯度线圈图案用专用的螺旋函数来描述,这些函数经过调整,可以使线圈在成像区域产生所需的磁场梯度、最小的杂散场和其他工程参数。设计的螺旋梯度线圈的性能与流函数梯度线圈进行了比较。数值评估表明,与传统解决方案相比,电感和电阻分别降低了 20.9%和 10.5%。对于 x 方向梯度线圈设计,整体线圈性能(通过优值 FoM 评估)提高了 26.5%;对于 z 方向梯度线圈设计,电感和电阻分别降低了 15.1%和 6.7%,FoM 提高了 17.7%。此外,通过直接控制导线分布,螺旋梯度线圈设计比传统线圈稀疏得多。