Affiliation:
1. Department of Sports Medicine, Beijing Key Laboratory of Sports Injuries Peking University Third Hospital Beijing China
2. Institute of Sports Medicine Peking University Beijing China
3. Department of Ultrasound Medicine Peking University Third Hospital Beijing China
4. Department of Ultrasound Medicine People's Hospital of Ningxia Autonomous Region Yinchuan China
Abstract
ObjectivesTo establish a reliable ultrasound (US) method of evaluating dynamic extrusion of lateral meniscus in healthy population, and to investigate the pattern of dynamic meniscus extrusion (ME) in lateral meniscus under loading conditions.MethodsThe lateral ME was examined via US method in unloaded, double‐leg standing, and single‐leg standing positions. Two different US measurement methods were compared to the magnetic resonance imaging (MRI) results to determine the optimal measurement methods. The US results obtained by different researchers were tested for interobserver consistency and the results obtained by the same researcher on two separate days were tested for intraobserver consistency. The patterns of dynamic extrusion were compared between medial and lateral sides.ResultsA total of healthy 44 volunteers were included in the study, with 86 knees assessed by US, and 25 knees evaluated by MRI. The US evaluation of dynamic lateral ME demonstrated excellent interobserver and intraobserver reliability. The US measurements using method A were consistent with the MRI results with no significant difference (P = .861, intraclass correlation coefficient [ICC] = 0.868), while method B underestimated the lateral ME compared to MRI (P = .001, ICC = 0.649). Lateral ME decreased slightly from unloaded (1.0 ± 0.8 mm) to single‐leg standing position (0.8 ± 0.8 mm), whereas medial ME increased significantly in both double‐leg and single‐leg standing positions (2.4 ± 0.7 mm, 2.6 ± 0.7 mm).ConclusionA novel US evaluation method of lateral ME was established with reliable and accurate results compared to the MRI. Lateral ME in healthy populations decreased slightly as the loadings increased, which was different from the pattern of dynamic extrusion in medial meniscus.