Madore Bruno, Hoge W Scott, Kwong Raymond
Department of Radiology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.
Magn Reson Med. 2006 Feb;55(2):352-62. doi: 10.1002/mrm.20763.
Unaliasing by Fourier-encoding the overlaps using the temporal dimension (UNFOLD) is a method to reduce the data acquisition burden in dynamic MRI. The method works by forcing aliased signals to behave in specific ways through time, so that these unwanted signals can be detected and removed. Unexpected events in time, such as displacements caused by breathing, have the potential to disturb the temporal strategy and may affect UNFOLD's ability to suppress aliasing artifacts. This work presents an extension of the UNFOLD method to accommodate temporal encoding disruptions. While the main type of disruption considered here comes from respiratory motion, other types of disruption can be envisioned, such as departures from the usual UNFOLD k-space sampling scheme. This extended version of UNFOLD was incorporated into UNFOLD-sensitivity encoding (UNFOLD-SENSE), and should also be applicable to closely related methods such as temporal SENSE (TSENSE), k-t Broaduse Linear Acquisition Speed up Technique (k-t BLAST), and k-t SENSE. Five patients were imaged with a modified version of a myocardial-perfusion sequence, and UNFOLD was used either alone or in conjunction with SENSE to obtain an acceleration of 2.0 (in three patients) or 3.0 (in two patients). In both cases this extended version of UNFOLD was able to suppress artifacts caused by the presence of breathing motion.
通过使用时间维度对重叠部分进行傅里叶编码来消除混叠(UNFOLD)是一种减轻动态磁共振成像中数据采集负担的方法。该方法通过迫使混叠信号随时间以特定方式表现来起作用,以便可以检测并去除这些不需要的信号。时间上的意外事件,例如由呼吸引起的位移,有可能干扰时间策略,并可能影响UNFOLD抑制混叠伪影的能力。这项工作提出了UNFOLD方法的扩展,以适应时间编码中断。虽然这里考虑的主要中断类型来自呼吸运动,但也可以设想其他类型的中断,例如偏离通常的UNFOLD k空间采样方案。这种扩展版的UNFOLD被纳入了UNFOLD灵敏度编码(UNFOLD-SENSE),并且也应该适用于密切相关的方法,如时间灵敏度编码(TSENSE)、k-t广义线性采集加速技术(k-t BLAST)和k-t灵敏度编码。对5名患者使用改良版的心肌灌注序列进行成像,单独使用UNFOLD或与灵敏度编码(SENSE)结合使用,加速因子为2.0(3名患者)或3.0(2名患者)。在这两种情况下,这种扩展版的UNFOLD都能够抑制由呼吸运动引起的伪影。