Literature DB >> 19460814

Tibial fixation of anterior cruciate ligament allograft tendons: comparison of 1-, 2-, and 4-stranded constructs.

Daniel K Park1, Harold A Fogel, Sanjeev Bhatia, Bernard R Bach, Aman Gupta, Elizabeth F Shewman, Vincent Wang, Nikhil Verma, Matthew T Provencher.   

Abstract

BACKGROUND: In sum, 1-, 2-, and 4-stranded allografts are used for soft tissue anterior cruciate ligament reconstruction; however, the fixation properties of fixation devices are not well assessed. HYPOTHESIS: There are no differences in the biomechanical characteristics of 1 (Achilles)-, 2 (posterior tibialis)-, and 4 (semitendinosus)-stranded allograft tibial fixation. STUDY
DESIGN: Controlled laboratory study.
METHODS: Sixty-three fresh-frozen porcine tibiae were used to evaluate the fixation of 1-, 2-, and 4-stranded human tendon allografts (Achilles, posterior tibialis, and semitendinosus) with 3 fixation devices (Delta, Intrafix, and Calaxo screws). With use of a materials testing system, each graft was subjected to 500 cycles of loading (50-250 N, 0.75 mm/sec) to determine displacement and cyclic stiffness, followed by a monotonic failure test (20 mm/min) to determine maximum load and pullout stiffness.
RESULTS: For each graft type, there were no significant biomechanical differences between fixation devices. However, the 1-stranded graft (Achilles) construct demonstrated significantly higher mean displacement (3.17 +/- 1.62 mm), lower cyclical stiffness (156 +/- 25 N/mm), lower load to failure (479 +/- 87 N), and lower pullout stiffness (140 +/- 28 N/mm). In comparison with the 2-stranded graft (posterior tibialis), the 4-stranded graft (semitendinosus) exhibited lower displacement (0.86 +/- 0.44 to 1.12 +/- 0.51 mm) and higher ultimate failure load (832 +/- 255 to 656 +/- 168 N). Numerous differences in fixation properties were noted when comparing a device to each of the 3 grafts.
CONCLUSION: The 1-stranded allograft demonstrated inferior biomechanical tibial fixation properties when compared with 2 (posterior tibialis)- and 4 (semitendinosus)-stranded allograft constructs for all fixation devices tested. CLINICAL RELEVANCE: This study demonstrated that not all tibial fixation devices are designed to adequately accommodate different types of anterior cruciate ligament allografts. Biomechanical evidence suggests that caution is warranted when using an Achilles allograft fixated solely with an interference device.

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Year:  2009        PMID: 19460814     DOI: 10.1177/0363546509332504

Source DB:  PubMed          Journal:  Am J Sports Med        ISSN: 0363-5465            Impact factor:   6.202


  4 in total

1.  A Biomechanical Analysis of Tibial Fixation Methods in Hamstring-Graft Anterior Cruciate Ligament Reconstruction.

Authors:  H Fogel; A Golz; A Burleson; M Muriuki; R Havey; G Carandang; A Patwardhan; P Tonino
Journal:  Iowa Orthop J       Date:  2019

2.  Smad8/BMP2-engineered mesenchymal stem cells induce accelerated recovery of the biomechanical properties of the Achilles tendon.

Authors:  Gadi Pelled; Jess G Snedeker; Ayelet Ben-Arav; Samuela Rigozzi; Yoram Zilberman; Nadav Kimelman-Bleich; Zulma Gazit; Ralph Müller; Dan Gazit
Journal:  J Orthop Res       Date:  2012-06-13       Impact factor: 3.494

3.  Evaluation of Tibial Fixation Devices for Quadrupled Hamstring ACL Reconstruction.

Authors:  Elias Ammann; Andreas Hecker; Elias Bachmann; Jess G Snedeker; Sandro F Fucentese
Journal:  Orthop J Sports Med       Date:  2022-05-11

4.  Torsional stability of interference screws derived from bovine bone--a biomechanical study.

Authors:  Joscha Bauer; Turgay Efe; Silke Herdrich; Leo Gotzen; Bilal Farouk El-Zayat; Jan Schmitt; Nina Timmesfeld; Markus Dietmar Schofer
Journal:  BMC Musculoskelet Disord       Date:  2010-05-01       Impact factor: 2.362

  4 in total

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