COMPARATIVE STUDY
JOURNAL ARTICLE
RANDOMIZED CONTROLLED TRIAL
All-arthroscopic triangular fibrocartilage complex repair: safety and biomechanical comparison with a traditional outside-in technique in cadavers.
Journal of Hand Surgery 2009 April
PURPOSE: To compare the biomechanical strength and safety of an all-arthroscopic triangular fibrocartilage (TFCC) repair technique with an outside-in technique in cadavers.
METHODS: Ten matched pairs of fresh-frozen cadaveric wrists were used for this study. The control group TFCC tears were treated with an outside-in technique using 2-0 polydioxane (PDS) sutures. The experimental group was treated with two FasT-Fix suture devices. I measured the location of the implants in relation to the neurovascular structures using a digital caliper. The strength of the repairs was then determined using a tensile testing machine with the load placed across the repair site. I compared results using the Student's t-test.
RESULTS: The most volar FasT-Fix block averaged 1.8 cm from the ulnar neurovascular bundle, whereas the PDS knots averaged 1.9 cm from it. The most dorsal FasT-Fix averaged 17.1 mm from the dorsal branch of the ulnar nerve, whereas the PDS knot was 4.6 mm. The average load to failure for the FasT-Fix repairs was 3.7 N, compared with 2.4 N for the PDS repairs (p < .05). The mode of failure for the FasT-Fix implants was the suture cutting through the TFCC tissue. The mode of failure for the PDS controls varied between the suture cutting through the tissue and the knots untying. One extensor carpi ulnaris tendon was injured by the PDS technique. No tendons were injured with the FasT-Fix technique.
CONCLUSIONS: This all-arthroscopic technique of TFCC repair is faster and stronger than the inside-out technique and is equally safe. Benefits of this repair are decreased operative time, reduced postoperative immobilization, and decreased irritation from prominent suture knots below the skin. For these reasons, it may be desirable to perform this technique to improve patient satisfaction.
METHODS: Ten matched pairs of fresh-frozen cadaveric wrists were used for this study. The control group TFCC tears were treated with an outside-in technique using 2-0 polydioxane (PDS) sutures. The experimental group was treated with two FasT-Fix suture devices. I measured the location of the implants in relation to the neurovascular structures using a digital caliper. The strength of the repairs was then determined using a tensile testing machine with the load placed across the repair site. I compared results using the Student's t-test.
RESULTS: The most volar FasT-Fix block averaged 1.8 cm from the ulnar neurovascular bundle, whereas the PDS knots averaged 1.9 cm from it. The most dorsal FasT-Fix averaged 17.1 mm from the dorsal branch of the ulnar nerve, whereas the PDS knot was 4.6 mm. The average load to failure for the FasT-Fix repairs was 3.7 N, compared with 2.4 N for the PDS repairs (p < .05). The mode of failure for the FasT-Fix implants was the suture cutting through the TFCC tissue. The mode of failure for the PDS controls varied between the suture cutting through the tissue and the knots untying. One extensor carpi ulnaris tendon was injured by the PDS technique. No tendons were injured with the FasT-Fix technique.
CONCLUSIONS: This all-arthroscopic technique of TFCC repair is faster and stronger than the inside-out technique and is equally safe. Benefits of this repair are decreased operative time, reduced postoperative immobilization, and decreased irritation from prominent suture knots below the skin. For these reasons, it may be desirable to perform this technique to improve patient satisfaction.
Full text links
Trending Papers
Carvedilol, probably the β-blocker of choice for everyone with cirrhosis and portal hypertension: But not so fast!Liver International : Official Journal of the International Association for the Study of the Liver 2023 June
Evidence-Based Guideline for the diagnosis and management of eosinophilic granulomatosis with polyangiitis.Nature Reviews. Rheumatology 2023 May 10
Get seemless 1-tap access through your institution/university
For the best experience, use the Read mobile app
Read by QxMD is copyright © 2021 QxMD Software Inc. All rights reserved. By using this service, you agree to our terms of use and privacy policy.
Get seemless 1-tap access through your institution/university
For the best experience, use the Read mobile app