Omae Hiromichi, Steinmann Scott P, Zhao Chunfeng, Zobitz Mark E, Wongtriratanachai Prasit, Sperling John W, An Kai-Nan
Biomechanics Laboratory, Division of Orthopedic Research, Mayo Clinic, Rochester, MN 55905, USA.
Clin Biomech (Bristol). 2012 Oct;27(8):789-92. doi: 10.1016/j.clinbiomech.2012.05.001. Epub 2012 May 17.
Acellular human dermal matrix grafts (Graftjacket; Wright Medical Technology, Arlington, TN, USA) are used clinically for rotator cuff augmentation without a detailed understanding of their biomechanical effects. The purpose of this study was to evaluate the effect of augmentation with dermal grafts on the biomechanical effects of rotator cuff repairs.
Nine matched pairs of human cadaveric shoulders were used. A single-row rotator cuff repair combined with an augmentation graft was performed on one shoulder, and a single-row repair was performed on the contralateral shoulder as a control. An acellular dermal matrix graft was sutured to the tendon medially and fixed to the humerus laterally. The constructs were preloaded at 10 N and then cyclically loaded between 10 and 180 N for 1000 cycles, followed by tensile testing to failure at 1.0 mm/s.
The maximum load of the augmentation group (560.2 N, SD 95.5) was greater than that of the control group (345.7 N, SD 60.8), while the linear stiffness of the augmentation group (65.2 N/mm, SD 15.6) was less than that of the control group (77.2 N/mm, SD 15.7). Reliable gap distance data were not obtained during cyclic loading in 5 of 9 augmented repairs due to the elasticity of the dermal matrix graft.
The dermal matrix graft augmentation increased the maximum load but did not increase the linear stiffness. The elasticity of the dermal matrix graft affected the biomechanical effects of the augmented rotator cuff repairs.
脱细胞人真皮基质移植物(Graftjacket;美国田纳西州阿灵顿市莱特医疗技术公司)在临床上用于肩袖增强,但对其生物力学效应缺乏详细了解。本研究的目的是评估真皮移植物增强对肩袖修复生物力学效应的影响。
使用9对匹配的人类尸体肩部。在一侧肩部进行单排肩袖修复并联合增强移植物,对侧肩部进行单排修复作为对照。将脱细胞真皮基质移植物内侧缝合至肌腱,外侧固定于肱骨。构建物先以10 N预加载,然后在10至180 N之间循环加载1000次,随后以1.0 mm/s的速度进行拉伸试验直至破坏。
增强组的最大负荷(560.2 N,标准差95.5)大于对照组(345.7 N,标准差60.8),而增强组的线性刚度(65.2 N/mm,标准差15.6)小于对照组(77.2 N/mm,标准差15.7)。由于真皮基质移植物的弹性,9例增强修复中有5例在循环加载期间未获得可靠的间隙距离数据。
真皮基质移植物增强增加了最大负荷,但未增加线性刚度。真皮基质移植物的弹性影响了增强肩袖修复的生物力学效应。