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Ultrasound Biomicroscopy for In vivo architectural characterization of gastrocnemius muscle from rats

机译:超声生物显微镜,用于大鼠腓肠肌肌肉的体内建筑特征

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This work applies the Ultrasound Biomicroscopy (UBM) technique to quantify the pennation angle (PA) and muscle thickness (MT) of rats' gastrocnemius muscle and to determine the reliability of these measurements. UBM (40MHz) images of five Wistar female rats were acquired at two ankle positions (neutral and full extension) and in two different days. A total of 320 images were processed to quantify PA and MT and a statistical analysis assessed data variability and reliability. The coefficients of variation were 9.37 and 3.97% for PA and MT, respectively, for the ankle at full extension and 15.41 and 4.99% for the ankle at neutral position. Pearson correlation between two repeated measurements in the same image were 0.93 and 0.99 for PA and MT, respectively. The results indicate that UBM is suitable for quantitative muscle architectural characterization and can be used in future muscle biomechanical studies.
机译:这项工作适用于超声生物显微镜(UBM)技术,以量化大鼠胃肠肌肌的缠结角(PA)和肌厚度(MT),并确定这些测量的可靠性。在两个脚踝位置(中性和全延伸)和两次不同的日子中获得了五种Wistar雌性大鼠的UBM(40MHz)图像。总共处理了320个图像以量化PA和MT,并且统计分析评估了数据变化和可靠性。 PA和MT的变异系数分别为3.37和3.97%,用于踝部的踝关节,中性位置的踝关节为15.41和4.99%。 PA和MT的两个重复测量之间的两次重复测量之间的Pearson相关性分别为0.93和0.99。结果表明,UBM适用于定量肌肉建筑特征,可用于未来的肌肉生物力学研究。

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