BIOMECHANICAL EFFECT OF DIFFERENT LAG SCREW LENGTHS WITH DIFFERENT BARREL LENGTHS IN DYNAMIC HIP SCREW SYSTEM: A FINITE ELEMENT ANALYSIS STUDY

Author:

TZENG CHUNG-YUH123,HUANG KUI-CHUO14,WU YUN-CHE1,CHANG CHU-LING2,LEE KUAN-RONG3,SU KUO-CHIH567

Affiliation:

1. Department of Orthopedics, Taichung Veterans General Hospital, Taichung, Taiwan

2. Department of Nursing, Hung Kuang University, Taichung, Taiwan

3. Institute of Molecular Medicine, College of Life Science, National Tsing Hua University, HsinChu, Taiwan

4. School of Medicine, National Yang-Ming University, Taipei, Taiwan

5. Department of Medical Research, Taichung Veterans General Hospital, 1650 Taiwan Boulevard Sector, Taichung City 40705, Taiwan

6. Rong Hsing Research Center for Translational Medicine, National Chung Hsing University, Taichung, Taiwan

7. Department of Biomedical Engineering, Hung Kuang University, Taichung, Taiwan

Abstract

The dynamic hip screw (DHS) system is commonly used to treat intertrochanteric fracture of the hip joint. Breakage of the lag screw was noted in clinical practice and the length of lag screw as well as the length of the side plate in the DHS system appeared to play a role in the risk of breakage. Thus, the aim of this study was to investigate the biomechanical effect of different lag screw lengths and barrel plate lengths in the DHS implant system by finite element analysis (FEA). Four FEA simulation models were created according to different lengths of lag screw (79[Formula: see text]mm and 63[Formula: see text]mm) and different lengths of barrel side plate (43[Formula: see text]mm and 37[Formula: see text]mm). The von Mises stress was used as the observation indicator. The results showed that the maximum tensile stress on the long lag screw was slightly greater than that of the shorter lag screw. Use of a shorter barrel side plate may also cause high stress between the lag screw and the barrel side plate. This finding provides biomechanical reference data that may be of value to orthopedic surgeons with respect to choice of implant size and length in the treatment of intertrochanteric fracture with a DHS system to prevent complications such as implant failure caused by broken lag screws.

Publisher

World Scientific Pub Co Pte Lt

Subject

Biomedical Engineering

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