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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Analyzing equilibrium water exchange between myocardial tissue compartments using dynamical two-dimensional correlation experiments combined with manganese-enhanced relaxography.
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Analyzing equilibrium water exchange between myocardial tissue compartments using dynamical two-dimensional correlation experiments combined with manganese-enhanced relaxography.

机译:使用动态二维相关实验结合锰增强弛豫描记法分析心肌组织区室之间的平衡水交换。

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摘要

Water compartments were identified and equilibrium water exchange was studied in excised rat myocardium enriched with intracellular manganese (Mn(2+)). Standard relaxographic measurements were supplemented with diffusion-T(2) and T(1)-T(2) correlation measurements. In nonenriched myocardium, one T(1) component (800 ms) and three T(2) components (32, 120, and 350 ms) were identified. The correlation measurements revealed fast- and slow-diffusing water fractions with mean diffusion coefficients of 1.2 x 10(-5) and 3.0 x 10(-5) cm(2) s(-1). The two shortest T(2) components, which had different diffusivities, both originated from water in intracellular compartments. A component with longer relaxation time (T(1) approximately equal 2200 ms; T(2) approximately equal 1200 ms), originating from extra-tissue water, was also observed. The presence of this component may lead to erroneous estimations of water exchange rates from multiexponential relaxographic analyses of excised tissues. The tissue T(1) value is strongly reduced with increasing enrichment of Mn(2+), and eventually a second tissue T(1) component emerges, indicating a shift in the equilibrium water exchange between intra- and extracellular compartments from the fast-exchange limit to the slow-exchange regime. Using a two-site water exchange analysis, the lifetime of intracellular water, T(ic), was found to be 475 ms, with a fraction, p(ic), of 0.71.
机译:确定水室,并在富含细胞内锰(Mn(2+))的切除大鼠心肌中研究平衡水交换。标准弛豫描记法测量补充了扩散T(2)和T(1)-T(2)相关测量。在未富集的心肌中,鉴定出一个T(1)成分(800毫秒)和三个T(2)成分(32、120和350毫秒)。相关性测量揭示了快速扩散和缓慢扩散的水部分,平均扩散系数分别为1.2 x 10(-5)和3.0 x 10(-5)cm(2)s(-1)。具有不同扩散率的两个最短的T(2)组件均源自细胞内区室中的水。还观察到具有更长的松弛时间(T(1)大约等于2200 ms; T(2)大约等于1200 ms)的成分,该成分源自组织外水。该成分的存在可能导致从切除组织的多指数弛豫分析中错误估计水交换速率。组织T(1)值随着Mn(2+)富集度的增加而大大降低,最终出现第二个组织T(1)组分,这表明细胞内和细胞外区室之间的平衡水交换从快速运动中转移。缓慢交易制度的交易限额。使用两点水交换分析,发现细胞内水的寿命T(ic)为475毫秒,分数p(ic)为0.71。

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