Heijman Edwin, Aben Jean-Paul, Penners Cindy, Niessen Petra, Guillaume René, van Eys Guillaume, Nicolay Klaas, Strijkers Gustav J
Biomedical NMR, Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, The Netherlands.
J Magn Reson Imaging. 2008 Jan;27(1):86-93. doi: 10.1002/jmri.21236.
To compare global functional parameters determined from a stack of cinematographic MR images of mouse heart by a manual segmentation and an automatic segmentation algorithm.
The manual and automatic segmentation results of 22 mouse hearts were compared. The automatic segmentation was based on propagation of a minimum cost algorithm in polar space starting from manually drawn contours in one heart phase. Intra- and interobserver variability as well as validity of the automatic segmentation was determined. To test the reproducibility of the algorithm the variability was calculated from the intra- and interobserver input.
The mean time of segmentation for one dataset was around 10 minutes and approximately 2.5 hours for automatic and manual segmentation, respectively. There were no significant differences between the automatic and the manual segmentation except for the end systolic epicardial volume. The automatically derived volumes correlated well with the manually derived volumes (R(2) = 0.90); left ventricular mass with and without papillary muscle showed a correlation R(2) of 0.74 and 0.76, respectively. The manual intraobserver variability was superior to the interobserver variability and the variability of the automatic segmentation, while the manual interobserver variability was comparable to the variability of the automatic segmentation. The automatic segmentation algorithm reduced the bias of the intra- and interobserver variability.
We conclude that automatic segmentation of the mouse heart provides a fast and valid alternative to manual segmentation of the mouse heart.
比较通过手动分割和自动分割算法从一系列小鼠心脏电影磁共振图像中确定的整体功能参数。
比较了22个小鼠心脏的手动和自动分割结果。自动分割基于从一个心动周期中手动绘制的轮廓开始在极坐标空间中传播最小成本算法。确定了观察者内和观察者间的变异性以及自动分割的有效性。为了测试算法的可重复性,从观察者内和观察者间的输入计算变异性。
一个数据集的平均分割时间分别约为10分钟和2.5小时,自动分割和手动分割各需时约2.5小时。除了收缩末期的心外膜容积外,自动分割和手动分割之间没有显著差异。自动得出的容积与手动得出的容积相关性良好(R(2)=0.90);有和没有乳头肌的左心室质量的相关性R(2)分别为0.74和0.76。手动观察者内变异性优于观察者间变异性和自动分割的变异性,而手动观察者间变异性与自动分割的变异性相当。自动分割算法减少了观察者内和观察者间变异性的偏差。
我们得出结论,小鼠心脏的自动分割为小鼠心脏的手动分割提供了一种快速且有效的替代方法。