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首页> 外文期刊>Journal of Biomedical Science and Engineering >Dynamic Contrast-Enhanced MRI of Mouse Liver: A Feasibility Study Using a Dual-Input Two-Compartment Tracer Kinetic Model
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Dynamic Contrast-Enhanced MRI of Mouse Liver: A Feasibility Study Using a Dual-Input Two-Compartment Tracer Kinetic Model

机译:小鼠肝脏动态对比度增强MRI:使用双输入两室示踪剂动力学模型的可行性研究

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Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) has been widely applied to evaluate microcirculatory parameters in clinical settings. However, pre-clinical studies involving DCE-MRI of small animals remain challenging with the requirement for high spatial and temporal resolution for quantitative tracer kinetic analysis. This study illustrates the feasibility of applying a high temporal resolution (2 s) protocol for liver imaging in mice by analyzing the DCE-MRI datasets of mice liver with a dual-input two-compartment tracer kinetic model. Phantom studies were performed to validate the T1 estimates derived by the proposed protocol before applying it in mice studies. The DCE-MRI datasets of mice liver were amendable to tracer kinetic analysis using a dual-input two-compartment model. Estimated micro-circulatory parameters were consistent with liver physiology, indicating viability of applying the technique for pre-clinical drug developments.
机译:动态对比增强磁共振成像(DCE-MRI)已被广泛应用于临床环境中评估微循环参数。然而,涉及对小动物的DCE-MRI的临床前研究对于具有高空间和时间分辨率的定量示踪动力学分析要求仍然具有挑战性。这项研究通过使用双输入两室示踪剂动力学模型分析小鼠肝脏的DCE-MRI数据集,说明了将高时间分辨率(2 s)方案用于小鼠肝脏成像的可行性。在将其应用于小鼠研究之前,进行了幻像研究,以验证通过提议的方案得出的T1估计值。小鼠肝脏的DCE-MRI数据集可修改为使用双输入两室模型的示踪动力学分析。估计的微循环参数与肝脏生理学一致,表明将该技术用于临床前药物开发的可行性。

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