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Updated: Jul 13, 2026

An Anesthesia, Surgery, and Harvest Method for the Evaluation of Transpedicular Screws Using an In Vivo Porcine Lumbar Spine Model
Published on: May 31, 2017
Biomechanical Evaluation of Y-Strut Dual Headless Compression Screws Versus Single Intramedullary Screw Fixation in
Samuel Lie1, Philippe Massard-Combe2, Sara Sadat Farshidfar1
1Specialty Orthopedics Upper Limb Surgery Research Foundation, Department of Orthopedics, Norwest Private Hospital, New South Wales, Australia.
Purpose:
To investigate whether a Y-strut configuration of dual headless compression screws provides greater force to failure when compared with a single intramedullary screw (IMS) in the fixation of proximal phalanx fractures.
Methods:
A biomechanical cadaveric study comparing Y-strut fixation with a single IMS in proximal phalanx fractures was performed. Sixteen proximal phalanges were dissected out from 4 hands of 2 fresh frozen cadavers and a fracture was created with a surgical saw. Specimens were divided into 2 groups and underwent fixation. Phalanges were mounted to a 3-point bending jig and tested to determine stiffness and load to failure.
Results:
The specimens in the single screw group demonstrated higher load to failure than in the dual screw group (250.8 N vs 197.0 N). Stiffness also generally was higher although this result was not statistically significant.
Conclusions:
Fixation of simple proximal phalanx fractures with a single 3.0 mm IMS had a greater force to failure than with dual 2.2 mm screws in a Y-strut configuration, although there was no significant difference in stiffness.
Clinical Relevance:
Fixation of a simple base of proximal phalanx fracture with dual 2.2 mm screws in Y-strut configuration results in a lower load to failure than with a single 3.0 mm screw. The shorter length of the second screw in this configuration may contribute to this result. Further investigation is required to investigate other configurations of dual screws.
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