Soellinger Michaela, Ryf Salome, Boesiger Peter, Kozerke Sebastian
Institute for Biomedical Engineering, University and Swiss Federal Institute of Technology (ETH) Zurich, Zurich, Switzerland.
J Magn Reson Imaging. 2007 Apr;25(4):709-14. doi: 10.1002/jmri.20882.
To quantify periodic displacement in the cranium using complementary spatial modulation of magnetization (CSPAMM) with harmonic phase (HARP) postprocessing.
CSPAMM tagging sequence with separate tag-line preparation in two orthogonal directions was applied on 10 healthy volunteers in combination with HARP for tissue displacement mapping.
Important features of brain dynamics, such as caudal displacement amplitude and the time-to-peak of the pulse wave were derived for six regions in the brain. Peak displacement values amounted to 0.18+/-0.02 mm, 0.10+/-0.01 mm, 0.09+/-0.02 mm, and 0.04+/-0.01 mm for regions in the pons, cerebellum, corpus callosum (splenium), and frontal lobe, respectively. Displacement values of the pons differed significantly from all other regions measured. With the additional information of the time-to-peak measure all six regions except the corpus callosum (splenium) and cerebellum can be distinguished. The values found suggest that the pulse wave travels from the brain stem first occipitally and then to the frontal lobe, where peak values appear later and are significantly attenuated.
Direct quantification of periodic caudal brain tissue displacement is feasible with the proposed method, and several brain regions can be distinguished through peak displacement and time-to-peak values.
利用带有谐波相位(HARP)后处理的互补空间调制磁化(CSPAMM)技术对颅骨中的周期性位移进行量化。
将在两个正交方向上具有单独标记线准备的CSPAMM标记序列应用于10名健康志愿者,并结合HARP进行组织位移映射。
得出了大脑六个区域脑动力学的重要特征,如尾端位移幅度和脉搏波的峰值时间。脑桥、小脑、胼胝体(压部)和额叶区域的峰值位移值分别为0.18±0.02毫米、0.10±0.01毫米、0.09±0.02毫米和0.04±0.01毫米。脑桥的位移值与所有其他测量区域有显著差异。通过峰值时间测量的附加信息,可以区分除胼胝体(压部)和小脑之外的所有六个区域。所发现的值表明脉搏波首先从脑干向枕部传播,然后到达额叶,在额叶峰值出现较晚且明显衰减。
所提出的方法对周期性尾端脑组织位移进行直接量化是可行的,并且可以通过峰值位移和峰值时间值区分几个脑区。