Reichert Andreas, Bock Michael, Reiss Simon, Overduin Christiaan G, Fütterer Jurgen J, Krafft Axel Joachim
Department of Radiology, Medical Physics, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Breisacher Str. 60a, 79106, Freiburg, Germany.
Department of Radiology and Nuclear Medicine, Radboud University Medical Center, Nijmegen, The Netherlands.
MAGMA. 2018 Dec;31(6):781-788. doi: 10.1007/s10334-018-0701-0. Epub 2018 Sep 6.
To accelerate a passive tracking sequence based on phase-only cross correlation (POCC) using simultaneous slice excitation.
For magnetic resonance (MR)-guided biopsy procedures, passive markers have been proposed that can be automatically localized online using a POCC-based tracking sequence. To accelerate the sequence, a phase-offset multiplanar (POMP) excitation technique was implemented to acquire tracking images. In a phantom experiment, the POMP-POCC sequence was tested and compared with the sequential non-accelerated version in terms of duration and accuracy. Further, technical feasibility of the POMP-POCC sequence was tested in a patient undergoing a prostate biopsy.
The temporal resolution of the POMP-POCC tracking sequence is accelerated by 33% compared with the sequential approach. In phantom experiments, the POMP-POCC and sequential sequences yielded the same targeting accuracy of 1.6 ± 0.7 mm. Technical proof of concept of the new sequence could be demonstrated in a successful in vivo prostate biopsy.
POMP-POCC tracking can substantially reduce the duration of localization of passive markers in MR-guided needle interventions without compromising targeting accuracy.
利用同步切片激发加速基于纯相位互相关(POCC)的被动跟踪序列。
对于磁共振(MR)引导的活检程序,已提出可使用基于POCC的跟踪序列在线自动定位的被动标记物。为了加速该序列,实施了相位偏移多平面(POMP)激发技术来获取跟踪图像。在体模实验中,对POMP-POCC序列进行了测试,并在持续时间和准确性方面与连续非加速版本进行了比较。此外,在一名接受前列腺活检的患者中测试了POMP-POCC序列的技术可行性。
与连续方法相比,POMP-POCC跟踪序列的时间分辨率提高了33%。在体模实验中,POMP-POCC序列和连续序列的靶向精度相同,均为1.6±0.