Bakker Chris J G, de Leeuw Hendrik, Vincken Koen L, Vonken Evert-Jan, Hendrikse Jeroen
Department of Radiology, University Medical Center Utrecht, Heidelberglaan 100, 3584CX Utrecht, The Netherlands.
Phys Med Biol. 2008 Sep 21;53(18):N349-58. doi: 10.1088/0031-9155/53/18/N02. Epub 2008 Aug 22.
In this note we wish to demonstrate the utility of phase gradient mapping (PGM) as an aid in the analysis and characterization of object-induced and system-related macroscopic phase perturbations in MRI. To achieve this goal, phase gradient maps and, if applicable, field gradient maps were derived from standard phase images via a forward difference operator taking into account phase wraps. By way of phantom experiments, PGM was shown to provide reliable phase and field gradient information, even in regions with multiple phase wraps. Phase gradient mapping was further shown to allow positive identification of local phase and field perturbations and global discrimination between positive and negative local susceptibility deviations. The suitability of PGM for in vivo studies was demonstrated by a 3D brain examination of a healthy volunteer.
在本报告中,我们希望展示相位梯度映射(PGM)在分析和表征MRI中物体诱导及系统相关宏观相位扰动方面的效用。为实现这一目标,通过考虑相位缠绕的前向差分算子,从标准相位图像中导出相位梯度图,以及在适用情况下的场梯度图。通过体模实验表明,即使在存在多个相位缠绕的区域,PGM也能提供可靠的相位和场梯度信息。进一步表明,相位梯度映射能够对局部相位和场扰动进行明确识别,并对局部正负磁化率偏差进行全局区分。对一名健康志愿者进行的三维脑部检查证明了PGM在体内研究中的适用性。