Kuchenbrod E, Kahler E, Thürmer F, Deichmann R, Zimmermann U, Haase A
Physikalisches Institut, Lehrstuhl für Biophysik, Universität Würzburg, Germany.
Magn Reson Imaging. 1998 Apr;16(3):331-8. doi: 10.1016/s0730-725x(97)00307-x.
Quantitative magnetic resonance (MR) images of flow velocities in intact corn plants were acquired using magnetization-prepared MR microscopy. A phase contrast flow imaging technique was used to quantitate water flow velocities and total volume flow rates in small xylem vessels. The simultaneous measurement of the transpiration of the whole plant was achieved by using a closed climate chamber within the MR magnet. The total volume flow rate and the transpiration values were in close correlation. Functional magnetic resonance imaging in intact plants was performed by light stimulation of the transpiration inside of the magnet. The change in the flow velocities in the xylem vessels of single vascular bundles was in correlation with the changes in the transpiration. Significant differences were observed between the xylem vessels in different vascular bundles. Furthermore, flow velocity measurements were performed on excised plant stems and visualized by the uptake of the MR contrast agent, gadolinium-diethylenetriamine pentaacetic acid (Gd-DTPA). A comparison between the phase contrast flow imaging and the contrast media uptake showed to be in good agreement with each other.
使用磁化准备的磁共振显微镜获取完整玉米植株中流速的定量磁共振(MR)图像。采用相位对比流动成像技术对小木质部导管中的水流速度和总体积流速进行定量。通过在MR磁体内部使用封闭气候室实现对整株植物蒸腾作用的同步测量。总体积流速与蒸腾值密切相关。通过对磁体内部蒸腾作用进行光刺激,对完整植株进行功能磁共振成像。单个维管束木质部导管中流速的变化与蒸腾作用的变化相关。在不同维管束的木质部导管之间观察到显著差异。此外,对切除的植物茎进行流速测量,并通过摄取磁共振造影剂钆-二乙烯三胺五乙酸(Gd-DTPA)进行可视化。相位对比流动成像与造影剂摄取之间的比较显示彼此吻合良好。