Kunkel Kevin A R, Rusly Roy J, Basinger R Randy, DesJardins John D, Gerard Patrick D
South Carolina Veterinary Specialists-Surgery, Columbia, South Carolina, USA.
Vet Surg. 2013 Feb;42(2):217-22. doi: 10.1111/j.1532-950X.2013.01094.x. Epub 2013 Feb 1.
To determine acute load to failure (ALF) and suture abrasion (SA) at 0° and 90° for a novel screw-type mini-anchor design.
Biomechanical in vitro study.
Synthetic bone.
Twenty mini-anchors were inserted into synthetic bone blocks assigned to 1 of 2 groups (0° ALF, 90° ALF). Pullout was performed at 5 mm/min. ALF, yield strength and stiffness were calculated. SA constructs were created with 4 groups of 5 anchors each with either 30 lb nylon leader line (NLL), 40 lb NLL, #2 Fiberwire or #5 Fiberwire. SA was performed at 0° and 90° with a sinusoidal wave form at 0.5 Hz and 10 N load for 1000 cycles or until failure. Data were summarized as mean ± SD. ALF data were analyzed using t-tests. SA data were analyzed using log rank, Tukey-adjusted pairwise comparisons and sign tests. Significance was set at P = .05.
Mean ± SD ALF at 0° and 90° was 431.8 ± 70.8 N and 683 ± 48.7 N, respectively. 90° ALF was significantly higher. Yield strength and stiffness were not significantly different at 0° and 90°. #5 and #2 Fiberwire survived significantly more cycles than 40 lb and 30 lb NLL at 90°. At 0°, 30 lb NLL survived significantly less cycles than either Fiberwire size. Suture orientation did not have a significant effect on SA for Fiberwire constructs.
The novel mini-anchor has ALF comparable to other mini-anchors. Fiberwire survived more cycles in the novel anchor eyelet than NLL and FW suture orientation in the eyelet did not affect SA.
确定一种新型螺旋式微型锚钉设计在0°和90°时的急性破坏载荷(ALF)和缝线磨损(SA)情况。
生物力学体外研究。
合成骨。
将20个微型锚钉插入分配到2组(0° ALF、90° ALF)之一的合成骨块中。以5毫米/分钟的速度进行拔出试验。计算ALF、屈服强度和刚度。SA构建体分为4组,每组5个锚钉,分别使用30磅尼龙引线(NLL)、40磅NLL、2号纤维线或5号纤维线。在0°和90°以0.5赫兹的正弦波形和10牛的载荷进行1000次循环或直至破坏的SA试验。数据总结为均值±标准差。使用t检验分析ALF数据。使用对数秩检验、经Tukey调整的成对比较和符号检验分析SA数据。显著性设定为P = 0.05。
0°和90°时的平均±标准差ALF分别为431.8±70.8牛和683±48.7牛。90°时的ALF显著更高。0°和90°时的屈服强度和刚度无显著差异。在90°时,5号和2号纤维线比40磅和30磅NLL存活的循环次数显著更多。在0°时,30磅NLL存活的循环次数比任何一种纤维线尺寸都显著更少。对于纤维线构建体,缝线方向对SA没有显著影响。
这种新型微型锚钉的ALF与其他微型锚钉相当。在新型锚钉孔眼中,纤维线比NLL存活的循环次数更多,且锚钉孔眼中的纤维线缝线方向不影响SA。