Bending Strength and Holding Power of Tibial Locking Screws
- 1 April 2001
- journal article
- research article
- Published by Wolters Kluwer Health
- Vol. 385 (385) , 199-206
- https://doi.org/10.1097/00003086-200104000-00031
Abstract
The bending strength and holding power of two types of specially designed tibial locking devices, a both-ends-threaded screw and an unthreaded bolt, were studied and compared with four types of commercially available tibial interlocking screws: Synthes, Howmedica, Richards, and Osteo AG. To test bending strength, the devices were inserted into a high molecular weight polyethylene tube and loaded at their midpoint by a materials testing machine to simulate a three point bending test. Single loading yielding strength and cyclic loading fatigue life were measured. To test holding power, the devices were inserted into tubes made of polyurethane foam, and their tips were loaded axially to measure pushout strength. The devices were tested with two different densities of foam materials and two different sizes of pilot holes. Insertion torque and stripping torque of the screws were measured first. Pushout tests were performed with each screw inserted with a tightness equal to 60% of its stripping torque. Test results showed that the yielding strength and the fatigue life were related closely to the inner diameter of the screws. The stripping torque predicted the pushout strength more reliably than did the insertion torque. All tested devices showed greater holding power in the foam with the higher density and with the smaller pilot holes. The both-ends-threaded screw had the highest pushout strength and a satisfactory fatigue strength. The unthreaded bolt had the highest fatigue strength but only fair holding power. Clinical studies of the use of these two types of locking devices are worthwhile.Keywords
This publication has 16 references indexed in Scilit:
- Fatigue Strength of Locking Screws and Prototypes Used in Small-Diameter Tibial NailsThe Journal of Trauma: Injury, Infection, and Critical Care, 1999
- Insertional Torque and Pull-out Strengths of Conical and Cylindrical Pedicle Screws in Cadaveric BoneSpine, 1996
- Factors Affecting the Pullout Strength of Cancellous Bone ScrewsJournal of Biomechanical Engineering, 1996
- The Rationales of Interlocking Nailing of the Femur, Tibia, and HumerusClinical Orthopaedics and Related Research, 1996
- Stability of Transpedicle Screwing for the Osteoporotic SpineSpine, 1993
- Pedicle Screw Pullout StrengthSpine, 1993
- External Fixator Pin DesignPublished by Wolters Kluwer Health ,1992
- Mechanical Characterization of Femoral Interlocking Intramedullary Nailing SystemsJournal of Orthopaedic Trauma, 1991
- Design and testing of external fixator bone screwsJournal of Biomedical Engineering, 1990
- Fatigue performance of external fixator pinsJournal of Orthopaedic Research, 1984