School of Medicine, University College Dublin, Dublin, Ireland.
School of Physics, University College Dublin, Dublin, Ireland.
PLoS One. 2022 Nov 10;17(11):e0277400. doi: 10.1371/journal.pone.0277400. eCollection 2022.
To assess the intra-rater reliability of static wide field of view ultrasound to quantify the architectural characteristics of the hamstring muscles.
Twenty amateur male athletes were recruited. Their left hamstring muscles were assessed using static wide field of view ultrasound on two separate occasions. Static ultrasound images were acquired by a single sonographer using a 92mm linear transducer. The architectural characteristics (muscle length, fascicle length, pennation angle and muscle thickness) from two distinct locations of the bicep femoris long head and semimembranosus were evaluated. Muscle length and thickness of the bicep femoris short head and semitendinosus muscle were also evaluated. Intraclass correlation coefficient analyses were performed to determine the intra-rater reliability of the performed measurements.
Both muscle (intraclass correlation coefficient = 0.99; standard error of measurement = 4.3 to 6.6mm) and fascicle (intraclass correlation coefficient = 0.92 to 0.98; standard error measurement = 1.1 to 2.4mm) length were measured with excellent intra-rater reliability. Muscle thickness was measured with excellent reliability (intraclass correlation coefficient = 0.9 to 0.96; standard error of measurement = 0.91mm to 1.4mm) for all hamstring muscles except for the proximal segments of the bicep femoris short head (intraclass correlation coefficient = 0.85; standard error of measurement = 0.84mm) and semitendinosus (intraclass correlation coefficient = 0.88; standard error of measurement = 0.82mm), which were measured with good reliability. Pennation angle was measured with good reliability (intraclass correlation coefficient = 0.77 to 0.87; standard error of measurement = 1 to 1.6°).
The architectural characteristics of the hamstring muscles of male amateur athletes can be reliably quantified using static wide field of view ultrasound.
评估静态宽视野超声定量评估腘绳肌结构特征的组内可靠性。
招募 20 名男性业余运动员。他们的左侧腘绳肌在两次不同的时间使用静态宽视野超声进行评估。由一名超声技师使用 92mm 线性探头获取静态超声图像。评估二头肌长头和半膜肌的两个不同位置的结构特征(肌肉长度、肌束长度、羽状角和肌肉厚度)。还评估了二头肌短头和半腱肌的肌肉长度和厚度。使用组内相关系数分析来确定所进行测量的组内可靠性。
肌肉(组内相关系数=0.99;测量误差=4.3 至 6.6mm)和肌束(组内相关系数=0.92 至 0.98;测量误差=1.1 至 2.4mm)长度的测量具有极好的组内可靠性。除了二头肌短头的近端节段(组内相关系数=0.85;测量误差=0.84mm)和半腱肌(组内相关系数=0.88;测量误差=0.82mm)外,肌肉厚度的测量具有极好的可靠性(组内相关系数=0.9 至 0.96;测量误差=0.91mm 至 1.4mm),对于所有腘绳肌来说,这都是可靠的。羽状角的测量具有良好的可靠性(组内相关系数=0.77 至 0.87;测量误差=1 至 1.6°)。
使用静态宽视野超声可以可靠地定量评估男性业余运动员的腘绳肌结构特征。