Literature DB >> 12902946

Biomechanical testing of an artificial cervical joint and an anterior cervical plate.

Denis J DiAngelo1, James T Roberston, Newton H Metcalf, Bobby J McVay, R Champ Davis.   

Abstract

An in vitro biomechanical study was conducted to determine the effects of fusion and nonfusion anterior cervical instrumentation on cervical spine biomechanics in a multilevel human cadaveric model. Three spine conditions were studied: harvested, single-level artificial cervical joint, and single-level graft with anterior cervical plate. A programmable testing apparatus was used that replicated physiologic flexion/extension and lateral bending. Measurements included vertebral motion, applied load, and bending moments. Relative rotations at the superior, implanted, and inferior motion segment units (MSUs) were normalized with respect to the overall rotation of those three MSUs and compared using a one-way analysis of variance (P < 0.05). Application of an anterior cervical plate decreased motion across the fusion site relative to the harvested and artificial joint spine conditions. The reduced motion was compensated for by an increase in motion at the adjacent segments. Use of an artificial cervical joint did not alter the motion patterns at either the instrumented level or the adjacent segments compared with the harvested condition for all modes of testing.

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Mesh:

Year:  2003        PMID: 12902946     DOI: 10.1097/00024720-200308000-00002

Source DB:  PubMed          Journal:  J Spinal Disord Tech        ISSN: 1536-0652


  48 in total

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4.  Subject-specific inverse dynamics of the head and cervical spine during in vivo dynamic flexion-extension.

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5.  Surgical outcome of cervical arthroplasty using bryan(r).

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6.  Cervical disc prosthesis versus arthrodesis using one-level, hybrid and two-level constructs: an in vitro investigation.

Authors:  Cédric Barrey; Sophie Campana; Sylvain Persohn; Gilles Perrin; Wafa Skalli
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7.  No Difference in Functional Outcome but Higher Revision Rate Among Smokers Undergoing Cervical Artificial Disc Replacement: Analysis of a Spine Registry.

Authors:  Lee Wen-Shen; Maksim Lai Wern Sheng; William Yeo; Tan Seang Beng; Yue Wai Mun; Guo Chang Ming; Mohammad Mashfiqul Arafin Siddiqui
Journal:  Int J Spine Surg       Date:  2020-12-29

8.  Does sagittal position of the CTDR-related centre of rotation influence functional outcome? Prospective 2-year follow-up analysis.

Authors:  P Suchomel; L Jurák; J Antinheimo; J Pohjola; J Stulik; H-J Meisel; M Čabraja; C Woiciechowsky; B Bruchmann; I Shackleford; R Arregui; S Sola
Journal:  Eur Spine J       Date:  2014-02-20       Impact factor: 3.134

9.  Continuous cervical spine kinematics during in vivo dynamic flexion-extension.

Authors:  William J Anderst; William F Donaldson; Joon Y Lee; James D Kang
Journal:  Spine J       Date:  2013-11-07       Impact factor: 4.166

10.  Disc prosthesis replacement and interbody fusion in the treatment of degenerative cervical disc disease: comparative analysis of 176 consecutive cases.

Authors:  Barbara Cappelletto; Fabrizia Giorgiutti; Claudio Veltri; Massimo A Trevigne; Paolo Facchin; Paolo Del Fabro
Journal:  Eur Spine J       Date:  2013-09-18       Impact factor: 3.134

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