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Neil D Broom

Showing results (21-30 of 46) with videos related to

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Journal of Anatomy|June 23, 2009
A microstructural investigation of intervertebral disc lamellar connectivity: detailed analysis of the translamellar bridgesMeredith L Schollum, Peter A Robertson, Neil D Broom
European Spine Journal : Official Publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society|February 21, 2014
Influence of maturity on nucleus-endplate integration in the ovine lumbar spineKelly R Wade, Peter A Robertson, Neil D Broom
Journal of the Mechanical Behavior of Biomedical Materials|July 13, 2012
Impact induced failure of cartilage-on-bone following creep loading: a microstructural and fracture mechanics studyAshvin Thambyah, Geran Zhang, Woong Kim, et al.
Journal of Anatomy|March 15, 2006
The structural basis of interlamellar cohesion in the intervertebral disc wallCelina A Pezowicz, Peter A Robertson, Neil D Broom
Spine|November 13, 2008
ISSLS prize winner: microstructure and mechanical disruption of the lumbar disc annulus: part II: how the annulus fails under hydrostatic pressureSamuel P Veres, Peter A Robertson, Neil D Broom
The Spine Journal : Official Journal of the North American Spine Society|September 4, 2018
New evidence for structural integration across the cartilage-vertebral endplate junction and its relation to herniationNurul Haiza Sapiee, Ashvin Thambyah, Peter A Robertson, et al.
Spine|March 1, 2019
Sagittal Alignment With Downward Slope of the Lower Lumbar Motion Segment Influences Its Modes of Failure in Direct Compression: A Mechanical and Microstructural InvestigationNurul Haiza Sapiee, Ashvin Thambyah, Peter A Robertson, et al.
Spine|February 8, 2014
How healthy discs herniate: a biomechanical and microstructural study investigating the combined effects of compression rate and flexionKelly R Wade, Peter A Robertson, Ashvin Thambyah, et al.
Spine|December 2, 2006
Mechanisms of anular failure resulting from excessive intradiscal pressure: a microstructural-micromechanical investigationCelina A Pezowicz, Helio Schechtman, Peter A Robertson, et al.
Spine|March 25, 2015
"Surprise" Loading in Flexion Increases the Risk of Disc Herniation Due to Annulus-Endplate Junction Failure: A Mechanical and Microstructural InvestigationKelly R Wade, Peter A Robertson, Ashvin Thambyah, et al.
Pageof 5

Showing results (21-30 of 46) with videos related to

Sort By:
Pageof 5
Journal of Anatomy|June 23, 2009
A microstructural investigation of intervertebral disc lamellar connectivity: detailed analysis of the translamellar bridgesMeredith L Schollum, Peter A Robertson, Neil D Broom
European Spine Journal : Official Publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society|February 21, 2014
Influence of maturity on nucleus-endplate integration in the ovine lumbar spineKelly R Wade, Peter A Robertson, Neil D Broom
Journal of the Mechanical Behavior of Biomedical Materials|July 13, 2012
Impact induced failure of cartilage-on-bone following creep loading: a microstructural and fracture mechanics studyAshvin Thambyah, Geran Zhang, Woong Kim, et al.
Journal of Anatomy|March 15, 2006
The structural basis of interlamellar cohesion in the intervertebral disc wallCelina A Pezowicz, Peter A Robertson, Neil D Broom
Spine|November 13, 2008
ISSLS prize winner: microstructure and mechanical disruption of the lumbar disc annulus: part II: how the annulus fails under hydrostatic pressureSamuel P Veres, Peter A Robertson, Neil D Broom
The Spine Journal : Official Journal of the North American Spine Society|September 4, 2018
New evidence for structural integration across the cartilage-vertebral endplate junction and its relation to herniationNurul Haiza Sapiee, Ashvin Thambyah, Peter A Robertson, et al.
Spine|March 1, 2019
Sagittal Alignment With Downward Slope of the Lower Lumbar Motion Segment Influences Its Modes of Failure in Direct Compression: A Mechanical and Microstructural InvestigationNurul Haiza Sapiee, Ashvin Thambyah, Peter A Robertson, et al.
Spine|February 8, 2014
How healthy discs herniate: a biomechanical and microstructural study investigating the combined effects of compression rate and flexionKelly R Wade, Peter A Robertson, Ashvin Thambyah, et al.
Spine|December 2, 2006
Mechanisms of anular failure resulting from excessive intradiscal pressure: a microstructural-micromechanical investigationCelina A Pezowicz, Helio Schechtman, Peter A Robertson, et al.
Spine|March 25, 2015
"Surprise" Loading in Flexion Increases the Risk of Disc Herniation Due to Annulus-Endplate Junction Failure: A Mechanical and Microstructural InvestigationKelly R Wade, Peter A Robertson, Ashvin Thambyah, et al.
Pageof 5