论文标题

非线性人乳房扩散线圈的设计

Design of a non-linear human breast diffusion coil

论文作者

Jia, Feng, Littin, Sebastian, Amrein, Philipp, Kroboth, Stefan, Yu, Huijun, Magill, Arthur W., Kuder, Tristan, Bickelhaupt, Sebastian, Laun, Frederik, Ladd, Mark E., Zaitsev, Maxim

论文摘要

女性乳房中的扩散加权成像(DWI)是一种磁共振成像(MRI)技术,它可能有可能替代或有效地补充X射线乳房X线摄影和对比增强的MR乳房X线摄影。为了进一步提高DWI在乳房中的特异性,更强,更快的扩散加权是有利的。考虑到目标应用,梯度线圈是在不规则形状的半开机表面上设计的。由于线圈以前与非球形靶区域紧密拟合,因此非线性编码场对于实现局部异常高的梯度强度特别有利。由于乳腺组织主要具有各向同性细胞微观结构,因此可以使扩散加权梯度的方向在目标体积内变化。但是,由于B因子对梯度强度的二次依赖性,需要仔细控制梯度幅度的变化。 为了实现上述设计目标,相应的多目标优化问题被重新构成作为约束优化,从而可以灵活,精确地控制线圈属性。提出了一种新的约束,以限制每个切片内的梯度幅度变化,同时允许在切片内梯度的方向和整个切片的幅度变化。上述创新使单侧线圈的设计可以在女性乳房中进行扩散,其局部梯度强度超过1〜t/m,具有高均匀的扩散加权,以在冠状切片方向进行成像。

Diffusion-weighted imaging (DWI) in the female breast is a magnetic resonance imaging (MRI) technique, which may potentially replace or effectively complement both x-ray mammography and contrast-enhanced MR mammography. To further improve specificity of DWI in the breast, stronger and faster diffusion weighting is advantageous. With the target application in mind, the gradient coil is designed on an irregularly shaped semi-open current-carrying surface. Due to the coil former closely fitting the non-spherical target region, non-linear encoding fields become particularly advantageous for achieving locally exceptionally high gradient strengths. As the breast tissue has a predominantly isotropic cellular microstructure, the direction of the diffusion-weighting gradient may be allowed to vary within the target volume. However, due to the quadratic dependency of the b-factor on the gradient strength, variation of the gradient magnitude needs to be carefully controlled. To achieve the above design goals the corresponding multi-objective optimization problem is reformulated as a constrained optimization, allowing for flexible and precise control of the coil properties. A novel constraint is proposed limiting the gradient magnitude variation within every slice while allowing for variations both the direction of the gradient within the slice and the magnitude across the slices. The above innovations enable the design of a unilateral coil for diffusion weighting in the female breast with the local gradient strengths exceeding 1~T/m with highly homogeneous diffusion weighting for imaging in the coronal slice orientation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源