Skip to main navigation Skip to search Skip to main content

The mechanical consequences of load bearing in the equine third metacarpal across speed and gait: The nonuniform distributions of normal strain, shear strain, and strain energy density

  • Pfizer
  • University of Washington

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

Distributions of normal strain, shear strain, and strain energy density (SED) were determined across the midshaft of the third metacarpal (MCIII, or cannon bone) of 3 adult thoroughbred horses as a function of speed and gait. A complete characterization of the mechanical demands of the bone made through the stride and from mild through the extremes of locomotion was possible by using three 3-element rosette strain gauges bonded at the diaphyseal midshaft of the MCIII and evaluating the strain output with beam theory and finite element analysis. Mean*SD values of normal strain, shear strain, and SED increased with speed and peaked during a canter (-3560±380 microstrain, 1760±470 microstrain, and 119±23 kPa, respectively). While the location of these peaks was similar across animals and gaits, the resulting strain distributions across the cortex were consistently nonuniform, establishing between a 73-fold (slow trot) to a 330-fold (canter) disparity between the sites of maximum and minimum SED for each gait cycle. Using strain power density as an estimate of strain history across the bone revealed a 154-fold disparity between peak and minimum at the walk but fell to∼32-fold at the canter. The nonuniform, minimally varying, strain environment suggests either that bone homeostasis is mediated by magnitude-independent mechanical signals or that the duration of stimuli necessary to establish and maintain tissue integrity is relatively brief, and thus the vast majority of strain information is disregarded.

Original languageEnglish
Pages (from-to)1887-1894
Number of pages8
JournalFASEB Journal
Volume27
Issue number5
DOIs
StatePublished - May 2013

Keywords

  • Bone adaptation
  • Bone remodeling
  • Cannon bone
  • Locomotion
  • Skeleton
  • Stress history
  • Vertebrate morphology

Fingerprint

Dive into the research topics of 'The mechanical consequences of load bearing in the equine third metacarpal across speed and gait: The nonuniform distributions of normal strain, shear strain, and strain energy density'. Together they form a unique fingerprint.

Cite this