首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Fixation strength of a novel bioabsorbable expansion bolt for patellar tendon bone graft fixation: an experimental study in calf tibial bone.
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Fixation strength of a novel bioabsorbable expansion bolt for patellar tendon bone graft fixation: an experimental study in calf tibial bone.

机译:一种新型的可生物吸收的expansion骨腱移植物固定螺栓的固定强度:小腿胫骨的实验研究。

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摘要

This biomechanical study compares the initial fixation strength of a novel bioabsorbable two-shell expansion bolt (EB) with that of a well-established interference-screw technique in bone-patellar tendon-bone (BPTB) reconstruction in a calf model. Thirty tibia plateaus (age 5-6 months) were assigned to three groups: In groups I and II, trapezoidal bone plugs of BPTB grafts were fixed with bioabsorbable poly-L-lactide interference screws (8 x 23 mm) or titanium interference screws (8 x 25 mm) respectively. In group III, semicircular grafts were fixed using bioabsorbable poly-D, L-lactide expansion bolts (5.8/8.7 x 10 x 35 mm). The tensile axis was parallel to the bone tunnel, and the construction was loaded until failure applying a displacement rate of 1 mm per second. In group II the mean ultimate loads to failure (713 N+/-218 N) were found to be significantly higher than those of groups I (487 N+/-205 N) and III (510 N+/-133 N). Measurement of stiffness showed 45 N/mm+/-13.3 in group I, 58 N/mm+/-17.4 in group II and 46 N/mm+/-6.9 in group III, and did not demonstrate significant differences. We found a correlation between insertion torque and wedge insertion force and ultimate loads to failure in all groups (r=0.53 in group I, r =0.54 in group II, and r =0.57 in group III). Cross-section planes of bone tunnel increased by 51%, 30% and 31% respectively, following insertion of screws or expansion of bolts (p<0.05). We conclude that ACL graft fixation by means of the presented expansion bolt demonstrates a fixation strength similar to the established bioabsorbable screw fixation, and is a reasonable alternative fixation method, especially since some of the specific pitfalls of screw fixation can be avoided.
机译:这项生物力学研究将小腿模型中新型生物可吸收两壳式膨胀螺栓(EB)的初始固定强度与成熟的干涉螺钉技术在骨bone骨腱-骨(BPTB)重建中的初始固定强度进行了比较。将30个胫骨平台期(年龄5-6个月)分为三组:在第一和第二组中,BPTB移植物的梯形骨栓用可生物吸收的聚L-丙交酯干扰螺钉(8 x 23 mm)或钛干扰螺钉固定( 8 x 25毫米)。在第三组中,使用可生物吸收的聚D,L-丙交酯膨胀螺栓(5.8 / 8.7 x 10 x 35 mm)固定半圆形移植物。拉伸轴平行于骨隧道,并加载结构直至失败,施加每秒1 mm的位移速率。在第二组中,平均平均极限疲劳载荷(713 N +/- 218 N)明显高于第一组(487 N +/- 205 N)和第三组(510 N +/- 133 N)。刚度的测量结果显示,第一组为45 N / mm +/- 13.3,第二组为58 N / mm +/- 17.4,第三组为46 N / mm +/- 6.9,但无明显差异。我们在所有组中都发现了插入扭矩和楔形插入力与破坏的最终载荷之间的相关性(I组中r = 0.53,II组中r = 0.54,III组中r = 0.57)。在插入螺钉或膨胀螺栓后,骨隧道的横截面分别增加了51%,30%和31%(p <0.05)。我们得出的结论是,通过提出的膨胀螺栓进行的ACL移植物固定具有类似于已建立的可生物吸收的螺钉固定的固定强度,并且是一种合理的替代固定方法,尤其是因为可以避免某些特定的螺钉固定缺陷。

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