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List of works by Kelly R Wade

"Surprise" Loading in Flexion Increases the Risk of Disc Herniation Due to Annulus-Endplate Junction Failure: A Mechanical and Microstructural Investigation

scientific article published on June 2015

A fresh look at the nucleus-endplate region: new evidence for significant structural integration

scientific article

A microstructural investigation of disc disruption induced by low frequency cyclic loading

scientific article published on 09 June 2017

A more realistic disc herniation model incorporating compression, flexion and facet-constrained shear: a mechanical and microstructural analysis. Part I: Low rate loading.

scientific article published on 7 August 2017

A more realistic disc herniation model incorporating compression, flexion and facet-constrained shear: a mechanical and microstructural analysis. Part II: high rate or 'surprise' loading

scientific article published on 8 August 2017

How healthy discs herniate: a biomechanical and microstructural study investigating the combined effects of compression rate and flexion

scientific article published in June 2014

ISSLS Prize Winner: A Detailed Examination of the Elastic Network Leads to a New Understanding of Annulus Fibrosus Organization

scientific article published on August 2015

ISSLS Prize Winner: Vibration Really Does Disrupt the Disc: A Microanatomical Investigation.

scientific article published on 31 March 2016

Influence of maturity on nucleus-endplate integration in the ovine lumbar spine.

scientific article published on 20 February 2014

Micromechanics of annulus-end plate integration in the intervertebral disc

scientific article published on 11 February 2012

On how nucleus-endplate integration is achieved at the fibrillar level in the ovine lumbar disc

scientific article published on 26 April 2012

Reconsidering the disc nucleus and its surroundings

2012 doctoral thesis by Kelly Wade at University of Auckland

Response to point of view

scientific article published on 01 June 2014

Staying connected: structural integration at the intervertebral disc-vertebra interface of human lumbar spines.

scientific article published on 15 April 2016