Literature DB >> 12063329

Biomechanical evaluation of proximal humeral fracture fixation supplemented with calcium phosphate cement.

Brian K Kwon1, Darrell J Goertzen, Peter J O'Brien, Henry M Broekhuyse, Thomas R Oxland.   

Abstract

BACKGROUND: Proximal humeral fractures are common injuries, and numerous surgical methods have been described for their treatment. The biomechanical characteristics of various internal fixation devices that are used to treat these fractures have not been extensively studied, nor has the potential beneficial effect of calcium phosphate cement supplementation.
METHODS: We used a cadaveric three-part proximal humeral osteotomy model to perform a biomechanical evaluation of three types of internal fixation devices: a cloverleaf plate, an angled blade-plate, and Kirschner wires. The effect of supplementing the fixation with SRS (Skeletal Repair System) calcium phosphate cement was evaluated as well. Eighteen pairs of fresh-frozen humeri were obtained, and the bone-mineral density of each specimen was measured. In each pair, one specimen was secured with internal fixation alone and the contralateral specimen was secured with internal fixation combined with calcium phosphate cement. The specimens were tested cyclically in abduction and in external rotation for 250 cycles to evaluate interfragmentary motion. The specimens were then loaded to failure in external rotation to measure torsional load to failure and torsional stiffness.
RESULTS: Overall, there were no significant differences between the specimens treated with the blade and cloverleaf plates, whereas the specimens treated with Kirschner wires demonstrated more interfragmentary motion, less stiffness, and lower torque to failure. In general, supplementation with calcium phosphate cement led to significant improvements in the mechanical performance of all three forms of internal fixation as demonstrated by a significant decrease in interfragmentary motion, a significant increase in torque to failure, and a significant increase in torsional stiffness. The addition of calcium phosphate cement increased the stiffness of even the most osteoporotic specimens to levels that were higher than those of the most osteodense specimens that had been treated with internal fixation alone.
CONCLUSION: The initial biomechanical properties of internal fixation as measured with use of a proximal humeral osteotomy model and three methods of fixation were significantly improved by the addition of calcium phosphate cement.

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Year:  2002        PMID: 12063329     DOI: 10.2106/00004623-200206000-00009

Source DB:  PubMed          Journal:  J Bone Joint Surg Am        ISSN: 0021-9355            Impact factor:   5.284


  11 in total

1.  [Biomechanical investigation of fixed-angle plate osteosynthesis of the proximal humerus].

Authors:  G Röderer; M AbouElsoud; F Gebhard; L Claes; A J Aschoff; L Kinzl
Journal:  Unfallchirurg       Date:  2010-02       Impact factor: 1.000

2.  Numerical investigation of fracture impaction in proximal humeral fracture fixation with locking plate and intramedullary nail.

Authors:  Yen-Nien Chen; Chih-Wei Chang; Chia-Wei Lin; Chih-Wei Wang; Yao-Te Peng; Chih-Han Chang; Chun-Ting Li
Journal:  Int Orthop       Date:  2017-01-24       Impact factor: 3.075

3.  Biomechanical in vitro assessment of fixed angle plating using a new concept of locking for the treatment of osteoporotic proximal humerus fractures.

Authors:  Götz Röderer; Florian Gebhard; Gert Krischak; Hans-Joachim Wilke; Lutz Claes
Journal:  Int Orthop       Date:  2010-04-26       Impact factor: 3.075

4.  Second generation locked plating of proximal humerus fractures--a prospective multicentre observational study.

Authors:  Götz Röderer; Johannes Erhardt; Markus Kuster; Paul Vegt; Christian Bahrs; Lothar Kinzl; Florian Gebhard
Journal:  Int Orthop       Date:  2010-04-25       Impact factor: 3.075

Review 5.  [Augmentation in the treatment of proximal humeral and femoral fractures].

Authors:  Nicole M van Veelen; Frank Jp Beeres; Björn-Christian Link; Reto Babst
Journal:  Unfallchirurgie (Heidelb)       Date:  2022-04-13

6.  [Augmentation technique on the proximal humerus].

Authors:  A Scola; F Gebhard; G Röderer
Journal:  Unfallchirurg       Date:  2015-09       Impact factor: 1.000

Review 7.  Biomechanical analysis of plate systems for proximal humerus fractures: a systematic literature review.

Authors:  Ali Jabran; Chris Peach; Lei Ren
Journal:  Biomed Eng Online       Date:  2018-04-27       Impact factor: 2.819

8.  A biomechanical comparison of Kirschner-wire fixation on fracture stability in Salter-Harris type I fractures of the proximal humeral physis in a porcine cadaveric model.

Authors:  Jiawen Ma; Tian Wang; Vedran Lovric; Kenneth A Johnson; William R Walsh
Journal:  BMC Vet Res       Date:  2017-10-25       Impact factor: 2.741

9.  Augmentation of a Locking Plate System Using Bioactive Bone Cement-Experiment in a Proximal Humeral Fracture Model.

Authors:  Guan-Ming Kuang; Tak Man Wong; Jun Wu; Jun Ouyang; Haihua Guo; Yapeng Zhou; Christian Fang; Frankie K L Leung; William Lu
Journal:  Geriatr Orthop Surg Rehabil       Date:  2018-10-08

10.  Biomechanical comparison of screw-based zoning of PHILOS and Fx proximal humerus plates.

Authors:  Ali Jabran; Chris Peach; Zhenmin Zou; Lei Ren
Journal:  BMC Musculoskelet Disord       Date:  2018-07-25       Impact factor: 2.362

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