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In vivo evaluation of an objective method to select power Doppler wall filter cut-off frequency for microvascular quantification

机译:体内评估选择功率多普勒壁滤波器截止频率用于微血管定量的客观方法

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Operator-dependent settings such as the wall filter cut-off frequency control the incidence of artifacts in Doppler images and limit the reliability of comparisons of Doppler vascular indices across longitudinal studies. To address this problem, the wall filter selection curve (WFSC) method was developed to objectively select the cut-off frequency. This paper reports the first evaluation of the effectiveness of the WFSC method for imaging a tumor model. 3-D power Doppler data were acquired from murine breast cancer tumors over a six-week study and the WFSC method was applied to select a cut-off frequency for the wall filter. Images reconstructed using the WFSC method were compared to images processed using a fixed cut-off frequency. Selection curves for tumor images were consistent with flow-phantom data from previous studies. The mean WFSC-selected cut-off showed significant variation among images acquired at different time points from each tumor (two-way ANOVA, p < 0.0001), which demonstrates the relevance of adjusting the cut-off frequency to match changing flow conditions. 3-D images processed using the WFSC method depicted additional vascular structures compared to volumes processed using a fixed cut-off frequency. Therefore, the WFSC method can facilitate acquisition of reliable Doppler images by inexperienced or time-sensitive operators.
机译:取决于操作员的设置(例如壁滤器截止频率)可控制多普勒图像中伪影的发生,并限制整个纵向研究中多普勒血管指数比较的可靠性。为了解决这个问题,开发了壁滤波器选择曲线(WFSC)方法来客观地选择截止频率。本文首次报道了WFSC方法对肿瘤模型成像的有效性。在为期六周的研究中,从鼠类乳腺癌肿瘤中获得了3-D功率多普勒数据,并应用WFSC方法选择壁滤器的截止频率。将使用WFSC方法重建的图像与使用固定截止频率处理的图像进行比较。肿瘤图像的选择曲线与先前研究的流模数据一致。 WFSC选择的平均截止值显示了在每个肿瘤从不同时间点获取的图像之间的显着差异(双向方差分析,p <0.0001),这表明调整截止频率以适应不断变化的流动条件的相关性。与使用固定截止频率处理的体积相比,使用WFSC方法处理的3-D图像显示了其他血管结构。因此,WFSC方法可以帮助经验不足或对时间敏感的操作员获取可靠的多普勒图像。

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