Background: All-inside meniscus repair eliminates the need for an extra incision and decreases neurovascular injury risk. Biomechanical testing can help delineate the efficacy of all-inside device use.
Hypothesis: There would be no group differences between 4 peripheral meniscus repair techniques and 3 different devices tested.
Study Design: Controlled laboratory study.
Methods: Equivalent-sized menisci with attached tibiae were randomly assigned to 1 of 4 test groups (8 specimens each), as follows: group 1, Fast-Fix using No. 0 braided polyester suture; group 2, inside-out repair using 2-0 braided polyester suture; group 3, Sequent using No. 0 ultra-high molecular weight polyethylene (UHMWPE) suture in a continuous "N" configuration; and group 4, Sequent using No. 0 UHMWPE suture in an interrupted configuration. After placement in a clamp, specimens underwent preconditioning from 5 to 20 N for 10 cycles (0.1 Hz), 500 submaximal loading cycles from 5 to 20 N (0.5 Hz), and load-to-failure testing at 12.5 mm/s. A 30-second pause after 10 preconditioning cycles and after 10, 100, and 500 submaximal loading cycles enabled digital photographs to be taken for gapping measurements. Failure mode was recorded.
Results: Specimens in group 3 withstood greater failure loads than did those in groups 1 and 4 (P ≤ .027), and group 3 specimens were stiffer than those in groups 2 and 4 (P ≤ .048). Displacement during submaximal loading and load-to-failure testing did not differ between groups. Groups 1, 3, and 4 each gapped less than group 2 during submaximal cyclic loading (P ≤ .05). Groups 1 and 2 failed primarily by suture breakage (P < .0001), while groups 3 and 4 failed primarily by the suture pulling free from an implant (P < .0001).
Conclusion: Sequent using No. 0 UHMWPE suture in a continuous "N" configuration displayed superior load at failure compared with repairs using Fast-Fix with No. 0 braided polyester suture and displayed greater stiffness and less gapping than inside-out repair using 2-0 braided polyester suture. The suture pulling free from an implant was the primary failure mode for Sequent using No. 0 UHMWPE suture regardless of whether a continuous "N" or an interrupted configuration was used. Study groups that used No. 0 UHMWPE sutures (groups 3 and 4) had more specimens fail by the suture pulling free from an implant. Compared with the weaker braided polyester suture in the inside-out and Fast-Fix groups, the No. 0 UHMWPE suture used in the Sequent groups likely influenced study results, as this suture has stronger material properties. However, the continuous "N" configuration likely also improved the performance of the Sequent with No. 0 UHMWPE suture, as failure load was significantly less with an interrupted configuration.
Clinical Relevance: All-inside meniscus repair with continuous suture function may translate into improved patient outcomes.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1177/0363546513479775 | DOI Listing |
World J Orthop
December 2024
Department of Clinical Affairs, Healthium Medtech Limited, Bangalore 560058, Karnātaka, India.
Purpose: The objective was to use cyclic tensile loading to compare the gap formation at suture site of three different suture materials to repair bovine radial meniscal tears: (1) polyglactin sutures, (2) tough adhesive puncture sealing (TAPS) sutures and (3) ultra-high molecular weight polyethylene (UHMWPE) sutures.
Methods: Twelve ex vivo bovine knees were dissected to retrieve the menisci. Complete radial tears were performed on 24 menisci, which were then separated into three groups and repaired using either pristine 2-0 polyglactin sutures, TAPS sutures (2-0 polyglactin sutures coated with adhesive chitosan/alginate hydrogels) or 2-0 UHMWPE sutures with a single stitch.
Knee Surg Sports Traumatol Arthrosc
December 2024
Leicester Academic Knee Unit, Department of Trauma and Orthopaedics, University Hospitals of Leicester NHS Trust, Leicester, UK.
Purpose: This study aims to perform a systematic review to determine whether ultra-high molecular weight polyethylene (UHMWPE) tapes have superior biomechanical properties compared to conventional sutures in posterior meniscal root tear (PMRT) repairs, and whether this translates into superior clinical outcomes.
Methods: The Cochrane Controlled Register of Trials, PubMed and Embase were used to perform a systematic review using the following search terms: (meniscus OR meniscal) AND (root OR posterior horn) AND (suture OR tape OR wire OR cord). Data pertaining to certain biomechanical properties (load to failure, stiffness, displacement during cyclical loading and at failure), meniscal healing and patient-reported outcome measures (PROMs) were extracted.
Mod Rheumatol Case Rep
December 2024
Division of Orthopedic Surgery, Department of Regenerative and Transplant Medicine, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.
Patellar tendon rupture is a severe complication following total knee arthroplasty. We encountered a case of rheumatoid arthritis with an incomplete rupture of the patellar tendon post-total knee arthroplasty. An 84-year-old woman was diagnosed with an incomplete rupture of the right patellar tendon 3 months post-total knee arthroplasty of her right knee.
View Article and Find Full Text PDFAm J Vet Res
January 2025
Department of Mechanical & Aerospace Engineering, College of Engineering, University of Florida, Gainesville, FL.
Objective: To compare the stability, ultimate strength, and isometry of 4 prosthetic ligament repairs for canine tarsal medial collateral ligament injury.
Methods: 24 cadaveric canine distal hind limbs with induced medial tarsal instability were randomly divided into 4 groups. Simulated medial shearing injury of the collateral and medial malleolus were repaired using 1 of 4 isometric suture techniques: bone tunnels with nylon suture (TN), ultrahigh-molecular-weight polyethylene (UHMWPE) suture (TU), tibial bone anchor with nylon suture (AN), or talar bone anchor with UHMWPE suture (AU).
Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!