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Journal article
Finite element modelling versus classic beam theory: comparing methods for stress estimation in a morphologically diverse sample of vertebrate long bones
Classic beam theory is frequently used in biomechanics to model the stress behaviour of vertebrate long bones, particularly when creating intraspecific scaling models. Although methodologically straightforward, classic beam theory requires complex irregular bones to be approximated as slender beams, and the errors associated with simplifying complex organic structures to such...Brassey, Charlotte A ; Margetts, L ; Kitchener, Andrew C ; Withers, P J ; Manning, Phillip L …
cross-sectional asymmetry, biomechanics, curvature, Finite element analysis, and beam theory
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Journal article
Testing hypotheses for the function of the carnivoran baculum using finite-element analysis
The high degree of endemism on Sulawesi has previously been suggested to have vicariant origins, dating back to 40 Ma. Recent studies, however, suggest that much of Sulawesi's fauna assembled over the last 15 Myr. Here, we test the hypothesis that more recent uplift of previously submerged portions of land...Brassey, Charlotte A ; Gardiner, James G ; Kitchener, Andrew C
biomechanics, copulation, baculum, finite-element analysis, genitalia, and intromission
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Journal article
The scaling of postcranial muscles in cats (Felidae) II: hindlimb and lumbosacral muscles ing of postcranial muscles in cats (Felidae) I: forelimb, cervical, and thoracic muscles
In quadrupeds the musculature of the hindlimbs is expected to be responsible for generating most of the propulsive locomotory forces, as well as contributing to body support by generating vertical forces. In supporting the body, postural changes from crouched to upright limbs are often associated with an increase of body...Cuff, Andrew R ; Sparkes, Emily L ; Randau, Marcelo ; Pierce, Stephanie E ; Kitchener, Andrew C …
locomotion, biomechanics, effective mechanical advantage, mammal, anatomy, and morphometrics