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Updated: Dec 26, 2025

Skeletal Muscle Gender Dimorphism from Proteomics
Published on: December 14, 2011
Sexual dimorphism in limb long bones of the German Shepherd Dog
Fabien Belhaoues1, Sabine Breit2, Gerhard Forstenpointner2
1UMR 5140 Archaeology of Mediterranean Societies, French National Center for Scientific Research (CNRS), LabEx ARCHIMEDE, IA-ANR-11-LABX-0032-01 program, University Paul-Valéry Montpellier 3, Montpellier, France.
Abstract:
The study of sexual dimorphism in dog anatomy, especially with regard to skeletal elements, has received little attention. The present work focuses on elements of the canine stylo- and zeugopodium, less documented than the skull or pelvis in the literature. In order to identify only sex-dependent effects, we analysed a single breed: the German Shepherd Dog. Data come from 25 dogs, with a balanced sex ratio (12 males and 13 females). Four skeletal elements of the forelimb and hindlimb (humerus, radius, femur, tibia) were each measured using seven linear morphometric variables. Univariate and multivariate analyses were then performed on these 28 variables. For all measurements, males are on average larger than females, with a mean sexual dimorphism ratio of 1.07. Sexual dimorphism is significant for 92.8% of the variables. Except of femoral measurements, diaphyseal values show the highest grade of sexual dimorphism. The mean level of disparity is higher in the forelimb (1.08) than in the hindlimb (1.05). A significant dimorphism is shown for the first component of principal component analyses conducted on each skeletal element, and for the second component with humerus measurements. Discriminant functions for sex identification give success rates included between 82% for the radius and 93% for the femur, the latter providing the highest reported score for sex identification in dogs from any skeletal element. These complementary statistic methods highlight a more dimorphic forelimb in size and a more dimorphic hindlimb in shape.
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