Biomechanics Laboratory, Division of Orthopedic Research, Mayo Clinic, Rochester, MN, USA.
J Shoulder Elbow Surg. 2012 Sep;21(9):1160-7. doi: 10.1016/j.jse.2011.08.042. Epub 2011 Nov 12.
Although posterior capsule tightness is believed to cause abnormal contact in the subacromial space, it is not clear whether this tightness changes the contact between the acromion and humeral head.
Nine fresh, frozen cadaveric shoulders were used to measure contact pressure on the coracoacromial arch during passive flexion, abduction, and internal and external rotation at 90° of elevation in the scapular plane, as well as horizontal adduction and abduction. The site where the peak contact pressure occurred was also observed. The posterior capsule in the region from 8 to 10 o'clock in the right shoulder was plicated to simulate posterior capsule tightness.
Peak contact pressure significantly increased with the tightened posterior capsule during flexion. Although peak contact pressure on the coracoacromial ligament during internal rotation significantly increased after capsule tightening, there was no significant increase in pressure when considering the entire coracoacromial arch. The angle where the peak contact pressure occurred during flexion was not significantly far from the end range. The site of the peak contact pressure in 7 of 9 shoulders was on the lesser tuberosity during flexion, regardless of the posterior capsule tightness.
Posterior capsule tightness increased contact pressure mainly on the lesser tuberosity during flexion. The peak contact pressure occurred close to the end range of flexion, mainly on the lesser tuberosity. These findings are useful to understand the contribution of posterior capsule tightness to subacromial contact.
尽管人们认为后囊紧张会导致肩峰下空间的异常接触,但目前尚不清楚这种紧张是否会改变肩峰与肱骨头之间的接触。
使用 9 个新鲜冷冻的尸体肩,在肩胛骨平面 90°抬高时测量被动屈伸、外展和内旋以及水平内收和外展时喙肩弓上的接触压力,以及观察发生峰值接触压力的部位。在右肩 8 点到 10 点的区域将后囊缝合以模拟后囊紧张。
在屈曲时,紧张的后囊会使峰值接触压力显著增加。虽然在收紧后囊后,内旋时喙肩韧带的峰值接触压力显著增加,但考虑到整个喙肩弓,压力并没有显著增加。在屈曲时发生峰值接触压力的角度与末端范围相差不大。无论后囊紧张与否,7 个肩中有 7 个肩在屈曲时峰值接触压力的部位均在小结节上。
后囊紧张主要增加了屈曲时小结节上的接触压力。峰值接触压力发生在屈曲的末端范围附近,主要在小结节上。这些发现有助于理解后囊紧张对肩峰下接触的贡献。