Sack Ingolf, Gedat Egbert, Bernarding Johannes, Buntkowsky Gerd, Braun Jürgen
Department of Medical Informatics, Charité-University Medicine Berlin, Campus Benjamin Franklin, Hindenburgdamm 30, D-12200 Berlin, Germany.
J Magn Reson. 2004 Feb;166(2):252-61. doi: 10.1016/j.jmr.2003.10.020.
The dynamics of the sol/gel phase transition in agarose was analyzed with magnetic resonance elastography (MRE) and diffusion-weighted imaging, providing complementary information on a microstructural as well as on a macroscopic spatial scale. In thermal equilibrium, the diffusion coefficient of agarose is linearly correlated with temperature, independent of the sol/gel phase transition. In larger agarose samples, the transition from the sol to the gel state was characterized by a complex position and temperature dependency of both MRE shear wave patterns and apparent diffusion coefficients (ADC). The position dependency of the temperature was experimentally found to be qualitatively similar to the behavior of the ADC maps. The dynamics of the temperature could be described with a simplified model that described the heat exchange between sol and gel compartments. The experiments supported the approach to derive temperature maps from the ADC maps by a linear relationship. The spatially resolved dynamics of the temperature maps were therefore employed to determine the elasticities. For this reason, experimental MRE data were simulated using a model of coupled harmonic oscillators. The calculated images agreed well with the experimentally observed MRE wave patterns.
利用磁共振弹性成像(MRE)和扩散加权成像分析了琼脂糖中溶胶/凝胶相变的动力学,在微观结构以及宏观空间尺度上提供了互补信息。在热平衡状态下,琼脂糖的扩散系数与温度呈线性相关,与溶胶/凝胶相变无关。在较大的琼脂糖样品中,从溶胶态到凝胶态的转变表现为MRE剪切波模式和表观扩散系数(ADC)的复杂位置和温度依赖性。实验发现温度的位置依赖性在定性上与ADC图的行为相似。温度的动力学可以用一个简化模型来描述,该模型描述了溶胶和凝胶隔室之间的热交换。实验支持通过线性关系从ADC图推导温度图的方法。因此,利用温度图的空间分辨动力学来确定弹性。出于这个原因,使用耦合谐波振荡器模型模拟了实验性MRE数据。计算得到的图像与实验观察到的MRE波模式吻合良好。