Literature DB >> 21613972

Biomechanical evaluation for mechanisms of periprosthetic femoral fractures.

Martin Rupprecht1, Kai Sellenschloh, Lars Grossterlinden, Klaus Püschel, Michael Morlock, Michael Amling, Johannes M Rueger, Wolfgang Lehmann.   

Abstract

BACKGROUND: There are a number of biomechanical tests for various treatment options of periprosthetic femoral fractures, but different loading modalities prelude their direct comparison. This study was designed to develop an experimental model of osteoporotic bone fractures near the femoral stem that is based on a simple testing protocol to increase the reproducibility. In addition, we wanted to clarify whether a femoral prosthetic stem reduces the femoral fracture strength.
METHODS: Twenty human cadaveric femurs were harvested, and five groups were randomized on the basis of the bone mineral density using a pQCT device. The specimens of three groups were provided with a cemented Exeter V40 stem and loaded to failure with torsion (I), anterior (II), and lateral load (III). The femurs of groups IV and V remained uninstrumented and were tested in a four-point bending assay similar to groups II and III. All biomechanical testings were realized with a servohydraulic testing machine (MTS).
RESULTS: There was no significant difference regarding bone mineral density of all groups. Torsional testing generated proximal intertrochanteric fractures and anterior loading resulted exclusively in supracondylar fractures. Introducing the force from the lateral side, all fracture lines occurred close to the tip of the stem, similar to a Vancouver-B fracture. Assuming that lateral load application is a main responsible mechanism of periprosthetic femoral fracture near the tip of the stem, the fracture strength of instrumented femurs was significantly reduced (group III: 4,692 N vs. group V: 6,931 N; p < 0.05).
CONCLUSION: Prosthetic stems reduce femoral fracture strength significantly. In an osteoporotic bone model, a four-point bending test with lateral load application seems to be a suitable approach.

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Year:  2011        PMID: 21613972     DOI: 10.1097/TA.0b013e3181e99ff1

Source DB:  PubMed          Journal:  J Trauma        ISSN: 0022-5282


  16 in total

Review 1.  Incidence and predisposing factors of periprosthetic proximal femoral fractures: a literature review.

Authors:  Claudia C Sidler-Maier; James P Waddell
Journal:  Int Orthop       Date:  2015-03-27       Impact factor: 3.075

Review 2.  Periprosthetic fractures: concepts of biomechanical in vitro investigations.

Authors:  Eike Jakubowitz; Jörn Bengt Seeger
Journal:  Int Orthop       Date:  2015-08-21       Impact factor: 3.075

3.  Inter-implant fractures: an unmet medical need-a preventive approach proposal.

Authors:  David Campillo-Recio; Miquel Videla-Ces; Miquel Sales-Pérez; Guillem Molina-Olivella; Sebastian Videla
Journal:  Eur J Orthop Surg Traumatol       Date:  2019-10-22

4.  Clinical and surgical approach of severe bone fragility fracture: clinical case of 4 fragility fracture in patient with heavy osteoporosis.

Authors:  Stefano Giannotti; Vanna Bottai; Erica Pini; Giacomo Dell'osso; Gaia De Paola; Giulio Guido
Journal:  Clin Cases Miner Bone Metab       Date:  2013-01

5.  Interposition sleeve as treatment option for interprosthetic fractures of the femur: a biomechanical in vitro assessment.

Authors:  Lukas Weiser; Michal A Korecki; Kay Sellenschloh; Florian Fensky; Klaus Püschel; Michael M Morlock; Johannes M Rueger; Wolfgang Lehmann
Journal:  Int Orthop       Date:  2015-04-26       Impact factor: 3.075

6.  Interprosthetic femoral fractures treated with locking plate.

Authors:  Nabil Ebraheim; Trevor Carroll; Muhammad Z Moral; Justin Lea; Adam Hirschfeld; Jiayong Liu
Journal:  Int Orthop       Date:  2014-07-12       Impact factor: 3.075

7.  [Periprosthetic and interimplant femoral fractures: Biomechanical analysis].

Authors:  M Rupprecht; C Schlickewei; F Fensky; M Morlock; K Püschel; J M Rueger; W Lehmann
Journal:  Unfallchirurg       Date:  2015-12       Impact factor: 1.000

Review 8.  Periprosthetic fractures around the femoral stem: overcoming challenges and avoiding pitfalls.

Authors:  Andrew N Fleischman; Antonia F Chen
Journal:  Ann Transl Med       Date:  2015-09

9.  A biomechanical comparison of locked and unlocked long cephalomedullary nails in a stable intertrochanteric fracture model.

Authors:  Patrick Kane; Bryan Vopat; David Paller; Sarath Koruprolu; Alan H Daniels; Christopher Born
Journal:  J Orthop Trauma       Date:  2014-12       Impact factor: 2.512

10.  What is the risk of stress risers for interprosthetic fractures of the femur? A biomechanical analysis.

Authors:  Wolfgang Lehmann; Martin Rupprecht; Jacob Nuechtern; Daniel Melzner; Kai Sellenschloh; Jan Kolb; Florian Fensky; Michael Hoffmann; Klaus Püschel; Michael Morlock; Johannes M Rueger
Journal:  Int Orthop       Date:  2012-11-07       Impact factor: 3.075

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