Gaafar Mohamed, Doyle Tom R, Frank Julia K, Hurley Eoghan T, Davey Martin S, White-Gibson Ailbhe, Khan Sami, Mullett Hannan
UPMC Sports Surgery Clinic, Northwood Avenue, Santry, Santry Demesne, Dublin 9, Ireland.
Ir J Med Sci. 2024 Dec;193(6):2813-2818. doi: 10.1007/s11845-024-03765-8. Epub 2024 Aug 13.
Loss of shoulder range of motion (ROM) is common after surgical management of anterior shoulder instability; however, it remains unclear to what degree this is related to their injury.
The purpose of this study was to compare passive shoulder ROM in patients with ASI to a normal contralateral shoulder.
A total of 121 patients undergoing stabilization surgery were prospectively enrolled. Preoperative advanced imaging was used to assess for glenoid bone loss and the presence of off-track Hill-Sachs lesions. Passive ROM was measured in both shoulders while under anaesthesia prior to surgery.
In all directions, there was a significant loss of ROM in shoulders with instability. Regression analysis showed that neither a glenoid bone defect nor greater glenoid bone loss were associated with a loss of ROM in any plane. The presence of a Hill-Sachs lesion was significantly associated with a loss of external rotation, while off-track lesions were associated with a loss of ROM in all planes (p < 0.05).
Patients with anterior shoulder instability lost motion in all directions, with a profound loss of external rotation. The presence of a glenoid bone defect nor greater bone loss did not reliably predict a loss of range of motion. A Hill-Sachs lesion was predictive of a loss of external rotation, while an off-track lesion was predictive of a loss of range in all directions.
肩关节前向不稳手术治疗后,肩关节活动度(ROM)丧失很常见;然而,其与损伤的关联程度仍不明确。
本研究旨在比较前向肩关节不稳(ASI)患者患侧与对侧正常肩关节的被动ROM。
前瞻性纳入121例行稳定手术的患者。术前采用高级影像学检查评估肩胛盂骨质丢失情况及是否存在脱轨型希尔-萨克斯损伤。术前在麻醉状态下测量双侧肩关节的被动ROM。
在各个方向上,不稳定肩关节的ROM均有显著丧失。回归分析显示,肩胛盂骨缺损或更严重的肩胛盂骨质丢失均与任何平面的ROM丧失无关。希尔-萨克斯损伤的存在与外旋丧失显著相关,而脱轨型损伤与所有平面的ROM丧失相关(p<0.05)。
前向肩关节不稳患者各方向活动均受限,外旋丧失尤为明显。肩胛盂骨缺损或更严重的骨质丢失并不能可靠地预测活动度丧失。希尔-萨克斯损伤可预测外旋丧失,而脱轨型损伤可预测各方向活动度丧失。