Itsuda Hikari, Yagi Masahide, Tateuchi Hiroshige, Tokoro Momoka, Ichihashi Noriaki
Human Health Sciences, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Research Fellow of Japan Society for the Promotion of Science, Chiyoda-ku, Tokyo, Japan.
PLoS One. 2025 Jun 4;20(6):e0325134. doi: 10.1371/journal.pone.0325134. eCollection 2025.
The iliocapsularis (IC) muscle contributes to hip stability and understanding its function in vivo is important. A previous study investigated the functional role of the IC by using electromyography. However, muscle can activate during not only their primary action, which is the direction to the moment arm, but also the stabilizers and fixators. As a result, clarifying the action of the muscle by measuring electromyography alone is a challenge. This study aimed to examine the action, namely the direction of the moment arm, of the IC using shear wave elastography. In total, 23 young healthy individuals (8 men and 15 women) participated in the study. The shear elastic modulus (G) of the right IC was measured in the following positions: (1) resting (hip flexion 0º, addiction 0º, and external rotation 0º), (2) hip flexion at 15º, (3) hip extension at 15º, (4) hip abduction at 15º, (5) hip adduction at 15º, (6) hip external rotation at 15º, and (7) hip internal rotation at 15º. Higher G values correspond to increased muscle elongation, assuming that the muscle acts in the opposite direction of the elevated G. Wilcoxon signed-rank test with Holm correction was performed to compare G between the resting position and each subsequent posture and between hip flexion-extension, hip abduction-adduction, and hip external-internal rotation. As a result, the G in extension (p < 0.001) and external rotation (p = 0.021) were significantly higher than that in the resting position. G in extension was higher than in flexion (p < 0.001), and G in external rotation was higher than in internal rotation (p = 0.007). These findings suggest that the IC is involved in hip flexion and internal rotation.
髂关节囊肌(IC)对髋关节稳定性有作用,了解其在体内的功能很重要。先前的一项研究通过肌电图研究了IC的功能作用。然而,肌肉不仅在其主要动作(即向力臂方向)时会激活,在稳定肌和固定肌动作时也会激活。因此,仅通过测量肌电图来阐明肌肉的动作是一项挑战。本研究旨在使用剪切波弹性成像检查IC的动作,即力臂方向。共有23名年轻健康个体(8名男性和15名女性)参与了该研究。在以下位置测量右侧IC的剪切弹性模量(G):(1)休息时(髋关节屈曲0°、内收0°和外旋0°),(2)髋关节屈曲15°时,(3)髋关节伸展15°时,(4)髋关节外展15°时,(5)髋关节内收15°时,(6)髋关节外旋15°时,以及(7)髋关节内旋15°时。假设肌肉的作用方向与升高的G相反,则较高的G值对应于肌肉伸长增加。采用经霍尔姆校正的威尔科克森符号秩检验来比较休息位置与每个后续姿势之间以及髋关节屈伸、外展内收和外旋内旋之间的G值。结果,伸展时(p < 0.001)和外旋时(p = 0.021)的G值显著高于休息位置。伸展时的G值高于屈曲时(p < 0.001),外旋时的G值高于内旋时(p = 0.007)。这些发现表明IC参与髋关节屈曲和内旋。