首页> 外文会议>Conference on Medical Imaging 2008: Imaging Processing; 20080217-19; San Diego,CA(US) >Automatic Alignment of Renal DCE-MRI Image Series for Improvement of Quantitative Tracer Kinetic Studies
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Automatic Alignment of Renal DCE-MRI Image Series for Improvement of Quantitative Tracer Kinetic Studies

机译:肾脏DCE-MRI图像系列的自动对准以改善定量示踪剂动力学研究

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Tracer kinetic modeling with dynamic contrast enhanced MRI (DCE-MRI) and the quantification of the kinetic parameters are active fields of research which have the potential to improve the measurement of renal function. However, the strong coronal motion of the kidney in the time series inhibits an accurate assessment of the kinetic parameters. Automatic motion correction is challenging due to the large movement of the kidney and the strong intensity changes caused by the injected bolus. In this work, we improve the quantification results by a template matching motion correction method using a gradient-based similarity measure. Thus, a tedious manual motion correction is replaced by an automatic procedure. The only remaining user interaction is reduced to a selection of a reference slice and a coarse manual segmentation of the kidney in this slice. These steps do not present an overhead to the interaction needed for the assessment of the kinetic parameters. In order to achieve reliable and fast results, we constrain the degrees of freedom for the correction method as far as possible. Furthermore, we compare our method to deformable registration using the same similarity measure. In all our tests, the presented template matching correction was superior to the deformable approach in terms of reliability, leading to more accurate parameter quantification. The evaluation on 10 patient data series with 180-230 images each demonstrate that the quantitative analysis by a two-compartment model can be improved by our method.
机译:具有动态对比增强MRI(DCE-MRI)的示踪剂动力学建模和动力学参数的量化是研究的活跃领域,具有改善肾功能测量的潜力。但是,时间序列中肾脏强烈的冠状运动阻碍了对动力学参数的准确评估。由于肾脏的大运动以及注射的推注引起的强烈强度变化,自动运动校正具有挑战性。在这项工作中,我们通过使用基于梯度的相似性度量的模板匹配运动校正方法来改进量化结果。因此,繁琐的手动运动校正被自动程序代替。唯一剩下的用户交互减少为参考切片的选择以及该切片中肾脏的粗略手动分割。这些步骤不会为评估动力学参数所需的相互作用带来任何开销。为了获得可靠和快速的结果,我们尽可能限制校正方法的自由度。此外,我们将我们的方法与使用相同相似性度量的可变形配准进行了比较。在我们所有的测试中,提出的模板匹配校正在可靠性方面均优于可变形方法,从而导致更准确的参数量化。通过对10个患者数据系列的180-230张图像进行评估,结果表明,采用我们的方法可以改善两室模型的定量分析。

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