南方医科大学学报 ›› 2015, Vol. 35 ›› Issue (08): 1116-.

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腓肠肌羽状角的超声自动测量

潘庆亚,陈朝宏,王青,黄庆华,陈武凡,冯前进   

  • 出版日期:2015-08-20 发布日期:2015-08-20

Automatic extraction of the pennation angle of the gastrocnemius muscles from
ultrasound radiofrequency signals

  • Online:2015-08-20 Published:2015-08-20

摘要: 目的本文提出腓肠肌羽状角的一种基于超声射频信号的互相关自动测量方法。方法本文采集正常人体腓肠肌与仿真
腓肠肌体模的超声射频信号,重建超声图像,确定肌束的搜索起始点,采用互相关算法自动跟踪肌束膜和肌腱膜,绘出肌束线和
肌腱膜线,计算两线之夹角,即为腓肠肌羽状角,并检验自动与手动两种测量方法的可重复性及一致性。结果利用互相关自动
测量方法可准确测量出体膜中仿真肌束羽状角,其测量值的均值与理论值之间的差异小于1°。利用互相关自动测量方法与手
动测量方法获得的正常人体腓肠肌羽状角分别为20.48°±0.47°与21.49°±1.79°,两种方法的变异系数CV值均小于3%,均方根
误差均小于1°。Bland-Altman差值法分析结果表明两种方法的一致性良好。结论本文所提出的腓肠肌羽状角自动测量方法
是基于超声射频信号的互相关算法,其测量结果与手动测量结果基本一致,在较严重的噪声情况下仍可跟踪腓肠肌的肌束走
向,自动测量腓肠肌的羽状角。

Abstract: Objective We propose a cross-correlation method for automatic extraction of the pennation angle (PA) of the
gastrocnemius (GM) muscle from ultrasound radiofrequency (RF) signals. Methods The ultrasound RF signals of the GM
muscles in tension condition from normal subjects and the simulated ultrasound signals were collected. After the starting point
of tracking, a fascicle was selected in the reconstructed GM ultrasound image from the RF signals, and the fascicle and deep
aponeurosis could be automatically tracked using the cross-correlation algorithm. The lines of the fascicle and deep
aponeurosis were then drawn and the PA was calculated. The reproducibility of the proposed method and its consistency with
the manual measurement method were tested. Results The angles of the simulated fascicles were precisely extracted
automatically. The difference between the experimental measurement and the theoretical values was less than 1° . The PA
measured automatically and manually was 20.48°±0.47° and 21.49°±1.79°, respectively. The coefficient of variation (CV) of the
two methods was less than 3% and the root-mean square error (RMSE) was less than 1°. Bland-Altman plot showed a good
agreement between the proposed automatic method and the manual method. Conclusion The proposed cross-correlation
automatic measurement method can detect the orientation of the fascicle and deep aponeurosis and measure the PA based on
ultrasound RF signals with serious speckle noise.