Lee Yoojin, Han Yeji, Park HyunWook
Department of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, South Korea.
Magn Reson Med. 2014 Mar;71(3):1324-35. doi: 10.1002/mrm.24776.
To significantly reduce the background phase effects, especially at the air-tissue interface, and to enhance the desirable local structures of veins in susceptibility-weighted imaging.
In the proposed reconstruction method called Magnitude of Complex Filtering, a complex-valued magnetic resonance image is acquired using a flow-compensated high-resolution 3D gradient-echo sequence and the magnitude of the complex-valued image is set to 1 so that the phase information, which contains details of the local susceptibility, is emphasized. Then, the nonlinear filter of the Magnitude of Complex Filtering method is applied to the complex-valued image with a constant magnitude. This filter utilizes the magnitude of the low-pass and high-pass filtered complex data to selectively reduce the background phase effects while enhancing the local structures. The filter output is then processed to generate a susceptibility-weighted image.
Compared with the conventional susceptibility-weighted images generated by a homodyne high-pass filter, the susceptibility-weighted images from the proposed Magnitude of Complex Filtering method show significant improvement; the undesirable artifacts at the air-tissue interface regions and the brain boundaries are significantly reduced, while the contrast of the local structures of veins is enhanced.
The Magnitude of Complex Filtering method successfully reduced most background phase effects without requiring additional processing or scan time.
显著减少背景相位效应,尤其是在空气 - 组织界面处,并在磁敏感加权成像中增强静脉的理想局部结构。
在所提出的称为复滤波幅度的重建方法中,使用流动补偿高分辨率三维梯度回波序列采集复值磁共振图像,并将复值图像的幅度设置为1,以便强调包含局部磁敏感性细节的相位信息。然后,将复滤波幅度方法的非线性滤波器应用于幅度恒定的复值图像。该滤波器利用低通和高通滤波后的复数据的幅度来选择性地减少背景相位效应,同时增强局部结构。然后对滤波器输出进行处理以生成磁敏感加权图像。
与由零差高通滤波器生成的传统磁敏感加权图像相比,所提出的复滤波幅度方法生成的磁敏感加权图像显示出显著改进;空气 - 组织界面区域和脑边界处的不良伪影显著减少,同时静脉局部结构的对比度增强。
复滤波幅度方法成功减少了大多数背景相位效应,无需额外处理或扫描时间。