Rougereau Grégoire, Marty-Diloy Thibault, Vigan Marie, Vialle Raphaël, Soubeyrand Marc, Langlais Tristan
Department of Pediatric Orthopedic Surgery, Sorbonne University, Armand Trousseau Hospital, APHP, Paris, France.
Department of Adult Orthopedic Surgery, Sorbonne University, Pitié-Salpêtrière Hospital, APHP, Paris, France.
J Hand Surg Eur Vol. 2022 Dec;47(11):1134-1141. doi: 10.1177/17531934221114301. Epub 2022 Aug 11.
The interosseous membrane of the forearm is an essential structure for the stability of the forearm skeleton, the most important part being the central band. The purpose of this study was to determine if shear wave elastography, a non-invasive ultrasound technique, can be used to measure shear wave speed in the central band and quantify stiffness. Fifteen healthy adult subjects were included (30 forearms). The participants forearms were positioned on an articulated plate, with their hand in neutral, pronated and then supinated positions of 30°, 60° and 90°. The shear wave speed was highest in 90° pronation (4.4 m/s (SD 0.3)) and 90° supination (4.4 m/s (SD 0.27)) indicating maximum stiffness in these positions. Its minimum value was in the neutral position, and either in 30° pronation or supination (3.5 m/s (SD 0.3)). Intra- and interobserver agreement was excellent, regardless of probe positioning or forearm mobilization. This study presents a reliable shear wave elastography measurement protocol to describe the physiological function of the central band of the interosseous membrane in healthy adults. IV.
前臂骨间膜是维持前臂骨骼稳定性的重要结构,其中央束最为关键。本研究旨在探讨一种非侵入性超声技术——剪切波弹性成像技术,能否用于测量骨间膜中央束的剪切波速度并量化其硬度。研究纳入了15名健康成年受试者(共30条前臂)。将受试者的前臂放置在一个关节板上,手部处于中立位、旋前30°、60°、90°以及旋后30°、60°、90°的位置。剪切波速度在旋前90°(4.4m/s(标准差0.3))和旋后90°(4.4m/s(标准差0.27))时最高,表明在这些位置硬度最大。其最小值出现在中立位以及旋前或旋后30°时(3.5m/s(标准差0.3))。无论探头位置或前臂活动情况如何,观察者内和观察者间的一致性都非常好。本研究提出了一种可靠的剪切波弹性成像测量方案,用于描述健康成年人骨间膜中央束的生理功能。第四章。