Risk factors for periprosthetic femoral fracture risk around a cemented polished taper-slip stem using an osteoporotic composite bone model

Author:

Jain Sameer12ORCID,Lamb Jonathan N12,Drake Ruth1,Entwistle Ian3,Baren James P4,Thompson Zachary5,Beadling Andrew R5ORCID,Bryant Michael G5,Shuweihdi Farag6,Pandit Hemant12

Affiliation:

1. Chapel Allerton Hospital, Leeds Teaching Hospitals NHS Trust, Leeds, UK

2. Leeds Institute of Rheumatic and Musculoskeletal Medicine, University of Leeds, Leeds, UK

3. Department of Radiography, University of Bradford, Bradford, UK

4. Department of Radiology, Leeds Teaching Hospitals NHS Trust, Leeds, UK

5. School of Mechanical Engineering, University of Leeds, Leeds, UK

6. School of Dentistry, University of Leeds, Leeds, UK

Abstract

This biomechanical study aimed to determine if variations in stem material, stem geometry, stem offset and cement viscosity affect mechanical resistance to postoperative periprosthetic fracture (PFF) after hip arthroplasty with a commonly used cemented polished taper-slip (PTS) stem (CPT, Zimmer Biomet) in a novel osteoporotic composite femoral bone model. Thirty-six osteoporotic composite femoral models were tested using a standardised in-vitro loading technique to simulate a typical PFF. Outcome measures were torque to failure (N), fracture energy (N/m2) and rotation to failure (°). Comparisons were made by stem material (cobalt chrome vs stainless steel), stem geometry (CPT stem vs Exeter stem), stem offset (standard offset vs extra extended offset) and cement viscosity (high viscosity vs low viscosity). Statistical comparisons were carried out with significance set at p < 0.05. All tested samples produced clinically representative fracture patterns with varying degrees of bone and cement comminution. There was no statistically significant difference in torque to failure, fracture energy or rotation to failure between any of the compared variables (all p > 0.05). This is the first biomechanical study on mechanical resistance to PFF using osteoporotic composite bone models. For the CPT stem, it confirms that stem material, stem offset, stem geometry and cement viscosity do not affect mechanical resistance to PFF in an osteoporotic bone model.

Funder

Zimmer Biomet

Publisher

SAGE Publications

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