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Spine|October 1, 1996
Can variations in intervertebral disc height affect the mechanical function of the disc?Y M Lu, W C Hutton, V M GharpurayJournal of Biomechanical Engineering|July 24, 1998
The effect of fluid loss on the viscoelastic behavior of the lumbar intervertebral disc in compressionY M Lu, W C Hutton, V M GharpuraySpine|November 15, 1996
Do bending, twisting, and diurnal fluid changes in the disc affect the propensity to prolapse? A viscoelastic finite element modelY M Lu, W C Hutton, V M GharpurayJournal of Biomechanical Engineering|May 1, 1992
Cracks emanating from slipping inclusions near a bone-implant interfaceV M Gharpuray, L M Keer, J L LewisJournal of Biomechanical Engineering|February 1, 1990
Cracks emanating from circular voids or elastic inclusions in PMMA near a bone-implant interfaceV M Gharpuray, L M Keer, J L LewisJournal of Spinal Disorders|April 1, 1995
Effects of posterior instrumentation on axial rotation of the lumbar spine: an in vitro biomechanical studyR Gunzburg, W C HuttonClinical Orthopaedics and Related Research|June 1, 1981
The mechanics of normal and hallux valgus feet--a quantitative studyW C Hutton, M DhanendranInternational Orthopaedics|January 1, 1979
A study of the distribution of load under the normal foot during walkingW C Hutton, M DhanendranActa Orthopaedica Scandinavica|December 1, 1978
Spondyloysis. The role of the posterior elements in resisting the intervertebral compressive forceW C Hutton, B M CyronPageof 22