Naoya Iida, Keigo Taniguchi, Kazuya Saizaki, S. Soma, H. Toda, M. Katayose
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引用次数: 0
摘要
先前的尸体研究已经确定了肩部后囊的有效拉伸位置;然而,尚不清楚这些伸展姿势是否对头顶运动员也有效。本研究旨在调查棒球运动员在先前尸体研究中确定的拉伸姿势中,后肩关节囊中是否产生被动张力。15名男性棒球运动员参与了这项研究,他们之前没有肩部受伤或做过手术。我们使用超声剪切波弹性成像测量了主肩在静息(30°屈曲时的中性肩内/外旋转)和拉伸(30°肩胛平面抬高(舟骨)时的最大肩内旋转)位置的中下后囊的剪切模量。中后囊的剪切模量在拉伸位置显著高于静止位置(静止与拉伸:20.9vs 34.6kPa,P<.001);然而,下后囊膜中两个位置的剪切模量没有显著差异(22.3 vs 29.5kPa,P=.120)。我们的研究结果表明,在头顶运动员30度肩关节内旋转拉伸过程中,中后囊膜会产生大量被动张力。
Elasticity of baseball players’ posterior shoulder capsule during internal rotation stretching at 30 degrees of scaption
Previous cadaveric studies have identified effective stretching positions for the posterior shoulder capsules; however, it is unknown whether these stretching positions are also effective in overhead athletes. This study aimed to investigate whether passive tension was generated in the posterior shoulder capsules in baseball players during stretching positions identified in previous cadaveric studies. Fifteen male baseball players without prior shoulder injuries or surgeries participated in this study. We measured the shear moduli of the middle and inferior posterior capsules of the dominant shoulder in the resting (neutral shoulder internal/external rotation at 30 degrees of flexion) and stretching (maximal shoulder internal rotation at 30 degrees of scapular plane elevation (scaption)) positions using ultrasound shear wave elastography. The shear moduli of the middle posterior capsule were significantly higher in the stretching position than in the resting position (resting vs stretching: 20.9 vs 34.6 kPa, P < .001); however, there was no significant difference in the shear moduli between both positions in the inferior posterior capsule (22.3 vs 29.5 kPa, P = .120). Our results revealed that a large amount of passive tension is generated in the middle posterior capsule during shoulder internal rotation stretching at 30 degrees of scaption in overhead athletes.