Department of Orthopaedic Biomaterial Science, Osaka University Graduate School of Medicine, Osaka, Japan.
Koishi Orthopaedic Clinic, Kyoto, Japan.
J Shoulder Elbow Surg. 2014 Jun;23(6):888-94. doi: 10.1016/j.jse.2013.09.004. Epub 2013 Dec 2.
Bankart repair postoperative complications include loss of shoulder motion and shoulder instability. The primary reason that postoperative complications develop may be excessive imbrication of the anterior band of the inferior glenohumeral ligament (AIGHL) or inadequate repair position. The purpose of this study was to quantitatively evaluate the influence of inadequate repair by computer simulation for a normal shoulder joint.
Magnetic resonance images of 10 normal shoulder joints were acquired for 7 positions every 30° from the maximum internal rotation to the maximum external rotation with the arm abducted at 90°. The shortest 3-dimensional path of the AIGHL in each rotational orientation was calculated. We used computer simulations to anticipate the loss of motion and instability by changing the AIGHL length and insertion sites on the glenoid.
The AIGHL length measured 50 ± 5 mm at the maximum external shoulder rotation. AIGHL shortening by 3, 6, and 9 mm made the angle of maximum external rotation 80°, 68°, and 54°, respectively. A superior deviation of 3, 6, and 9 mm on the glenoid insertion resulted in a maximum external rotation angle of 85°, 79°, and 77°. An inferior deviation of 3, 6, and 9 mm produced humeral head translation of 1.7, 2.9, and 3.6 mm.
Simulation of both excessive imbrication and deviation of the insertion position led to quantitative prediction of the resulting loss of motion and instability. These findings will be useful for anticipating complications after Bankart repair.
Basic science study, computer modeling, imaging.
Bankart 修复术后并发症包括肩关节活动度丧失和肩关节不稳定。术后并发症发展的主要原因可能是下盂肱韧带前带(AIGHL)过度缝合或修复位置不足。本研究旨在通过计算机模拟对正常肩关节进行定量评估,以评估修复不足的影响。
对 10 个正常肩关节进行磁共振成像,在手臂外展 90°的情况下,从最大内旋到最大外旋每 30°采集 7 个位置的图像。计算每个旋转方向 AIGHL 的最短三维路径。我们使用计算机模拟通过改变 AIGHL 在上盂唇的长度和插入点来预测运动损失和不稳定。
最大外旋时 AIGHL 长度为 50±5mm。AIGHL 缩短 3、6 和 9mm 分别使最大外旋角度为 80°、68°和 54°。盂唇插入处的上偏差 3、6 和 9mm 导致最大外旋角度为 85°、79°和 77°。下偏差 3、6 和 9mm 导致肱骨头位移分别为 1.7、2.9 和 3.6mm。
对过度缝合和插入位置偏差的模拟导致了对运动损失和不稳定的定量预测。这些发现将有助于预测 Bankart 修复后的并发症。
基础科学研究、计算机建模、影像学。