Windt Carel W, Vergeldt Frank J, Van As Henk
Laboratory of Biophysics and Wageningen NMR Centre, Wageningen University, Dreijenlaan 3, 6703 HA Wageningen, The Netherlands.
J Magn Reson. 2007 Apr;185(2):230-9. doi: 10.1016/j.jmr.2006.12.015. Epub 2007 Jan 8.
A method for correlated displacement-T2 imaging is presented. A Pulsed Field Gradient-Multi Spin Echo (PFG-MSE) sequence is used to record T2 resolved propagators on a voxel-by-voxel basis, making it possible to perform single voxel correlated displacement-T2 analyses. In spatially heterogeneous media the method thus gives access to sub-voxel information about displacement and T2 relaxation. The sequence is demonstrated using a number of flow conducting model systems: a tube with flowing water of variable intrinsic T2's, mixing fluids of different T2's in an "X"-shaped connector, and an intact living plant. PFG-MSE can be applied to yield information about the relation between flow, pore size and exchange behavior, and can aid volume flow quantification by making it possible to correct for T2 relaxation during the displacement labeling period Delta in PFG displacement imaging methods. Correlated displacement-T2 imaging can be of special interest for a number of research subjects, such as the flow of liquids and mixtures of liquids or liquids and solids moving through microscopic conduits of different sizes (e.g., plants, porous media, bioreactors, biomats).
本文提出了一种相关位移 - T2成像方法。采用脉冲场梯度 - 多自旋回波(PFG - MSE)序列逐体素记录T2分辨传播子,从而能够进行单体素相关位移 - T2分析。在空间异质介质中,该方法可获取有关位移和T2弛豫的亚体素信息。使用多个流动传导模型系统对该序列进行了演示:具有可变固有T2值的流水管、“X”形连接器中不同T2值的混合流体以及完整的活体植物。PFG - MSE可用于获取有关流动、孔径和交换行为之间关系的信息,并且通过在PFG位移成像方法中校正位移标记期Δ期间的T2弛豫,有助于体积流量定量。相关位移 - T2成像对于许多研究对象可能特别有意义,例如液体以及液体或液体与固体混合物在不同尺寸的微观管道(如植物、多孔介质、生物反应器、生物膜)中的流动。