Jia Feng, Schultz Gerrit, Testud Frederik, Welz Anna Masako, Weber Hans, Littin Sebastian, Yu Huijun, Hennig Jürgen, Zaitsev Maxim
Medical Physics, Department of Radiology, University Medical Center Freiburg, Breisacher Str. 60a, 79106, Freiburg, Germany.
MAGMA. 2016 Feb;29(1):59-73. doi: 10.1007/s10334-015-0519-y. Epub 2015 Dec 14.
In this paper, we present a new performance measure of a matrix coil (also known as multi-coil) from the perspective of efficient, local, non-linear encoding without explicitly considering target encoding fields.
An optimization problem based on a joint optimization for the non-linear encoding fields is formulated. Based on the derived objective function, a figure of merit of a matrix coil is defined, which is a generalization of a previously known resistive figure of merit for traditional gradient coils.
A cylindrical matrix coil design with a high number of elements is used to illustrate the proposed performance measure. The results are analyzed to reveal novel features of matrix coil designs, which allowed us to optimize coil parameters, such as number of coil elements. A comparison to a scaled, existing multi-coil is also provided to demonstrate the use of the proposed performance parameter.
The assessment of a matrix gradient coil profits from using a single performance parameter that takes the local encoding performance of the coil into account in relation to the dissipated power.
在本文中,我们从高效、局部、非线性编码的角度提出了一种矩阵线圈(也称为多线圈)的新性能指标,而无需明确考虑目标编码场。
提出了一个基于非线性编码场联合优化的优化问题。基于导出的目标函数,定义了矩阵线圈的品质因数,它是传统梯度线圈先前已知电阻品质因数的推广。
使用具有大量元件的圆柱形矩阵线圈设计来说明所提出的性能指标。对结果进行分析以揭示矩阵线圈设计的新特性,这使我们能够优化线圈参数,如线圈元件数量。还与一个按比例缩放的现有多线圈进行了比较,以展示所提出性能参数的用途。
使用单个性能参数评估矩阵梯度线圈是有益的,该参数考虑了线圈相对于耗散功率的局部编码性能。