Matsuhashi Tomoya, Hooke Alexander W, Zhao Kristin D, Goto Akira, Sperling John W, Steinmann Scott P, An Kai-Nan
Biomechanics Laboratory, Division of Orthopedic Research, Mayo Clinic, Rochester, Minnesota.
Clin Anat. 2014 Jul;27(5):702-6. doi: 10.1002/ca.22322. Epub 2013 Nov 8.
The supraspinatus tendon consists morphologically of two sub-regions, anterior and posterior. The anterior sub-region is thick and tubular while the posterior is thin and strap-like. The purpose of this study was to compare the structural and mechanical properties of the anterior and posterior sub-regions of the supraspinatus tendon. The supraspinatus tendons from seven human cadaveric shoulders were morphologically divided into the anterior and posterior sub-regions. Length, width, and thickness were measured. A servo-hydraulic testing machine (MTS Systems Corporation, Minneapolis, MN) was used for tensile testing. The maximal load at failure, modulus of elasticity and ultimate tendon stress were calculated. Repeated measures were used for statistical comparisons. The mean anterior tendon cross-sectional area was 47.3 mm(2) and the posterior was 32.1 mm(2) . Failure occurred most often at the insertion site: anterior (5/7) and posterior (6/7). All parameters of the anterior sub-region were significantly greater than those of the posterior sub-region. The moduli of elasticity at the insertion site were 592.4 MPa in the anterior sub-region and 217.7 MPa in the posterior (P = 0.01). The ultimate failure loads were 779.2 N in the anterior sub-region and 335.6 N in the posterior (P = 0.003). The ultimate stresses were 22.1 MPa in the anterior sub-region and 11.6 MPa in the posterior (P = 0.008). We recognized that the anterior and posterior sub-regions of the SSP tendon have significantly different mechanical properties. In a future study, we need to evaluate how best to repair an SSP tendon considering these region-specific properties.
冈上肌腱在形态上由两个亚区域组成,即前部和后部。前部亚区域厚且呈管状,而后部则薄且呈带状。本研究的目的是比较冈上肌腱前部和后部亚区域的结构和力学性能。从七具人类尸体肩部获取的冈上肌腱在形态上被分为前部和后部亚区域。测量了长度、宽度和厚度。使用伺服液压试验机(MTS系统公司,明尼阿波利斯,明尼苏达州)进行拉伸试验。计算了破坏时的最大负荷、弹性模量和极限肌腱应力。采用重复测量进行统计比较。前部肌腱的平均横截面积为47.3平方毫米,后部为32.1平方毫米。破坏最常发生在附着点处:前部(5/7)和后部(6/7)。前部亚区域的所有参数均显著大于后部亚区域。前部亚区域附着点处的弹性模量为592.4兆帕,后部为217.7兆帕(P = 0.01)。前部亚区域的极限破坏负荷为779.2牛,后部为335.6牛(P = 0.003)。前部亚区域的极限应力为22.1兆帕,后部为11.6兆帕(P = 0.008)。我们认识到冈上肌腱前部和后部亚区域具有显著不同的力学性能。在未来的研究中,我们需要考虑这些区域特异性特性来评估如何最好地修复冈上肌腱。