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Numerical simulation of the b-SSFP sequence in MR perfusion-weighted imaging of the kidney

机译:肾脏MR灌注加权成像中B-SSFP序列的数值模拟

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Magnetic resonance (MR) simulation is one of the possible approaches to test and develop new imaging protocols. It can assist in fast, on-demand verification of various hypotheses concerning the impact of different physical and/or technical factors on image appearance. In this paper, we perform numerical simulation of dynamic contrast-enhanced MR imaging. In particular, we present the implementation of the so-called balanced steady state free precession sequence and show its application in the synthesis of DCE-MR images mimicking perfusion-weighted examinations of the kidney. To this end, we designed a simplified digital phantom of renal parenchyma comprising of kidney cortex and medulla. The phantom was constructed based on manual segmentation of a real high-resolution CT image of the abdomen. The contrast agent kinetics was incorporated into the model by assigning time-varying T1 relaxation time to the kidney tissue segments. The relevant T1 time courses were determined based on analysis of real DCE-MR studies. Eventually, the practical aspects of the designed simulator are illustrated in an example application, where selected image-derived perfusion characteristics are referred to physiological parameters of the kidney.
机译:磁共振(MR)仿真是测试和开发新的成像协议的可能方法之一。它可以快速,按需验证各种假设,了解不同物理和技术因素对图像外观的影响。在本文中,我们执行动态对比增强MR成像的数值模拟。特别是,我们展示了所谓的平衡稳态自由进序序列的实施,并展示其在合成肾脏灌注加权检查的DCE-MR图像的合成中的应用。为此,我们设计了包含肾皮质和髓质的简化数码肾小耳肾脏薄膜。基于腹部真正的高分辨率CT图像的手动分割来构建幻像。通过分配时变T将造影剂动力学并入模型中 1 放松时间到肾脏组织段。相关的T. 1 时间课程是基于对实际DCE-MR研究的分析来确定的。最终,设计模拟器的实际方面在示例申请中示出,其中所选择的图像衍生的灌注特性被称为肾脏的生理参数。

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