Skip to main content
Journal cover image

The evolution of vertical climbing in primates: evidence from reaction forces.

Publication ,  Journal Article
Hanna, JB; Granatosky, MC; Rana, P; Schmitt, D
Published in: The Journal of experimental biology
September 2017

Vertical climbing is an essential behavior for arboreal animals, yet limb mechanics during climbing are poorly understood and rarely compared with those observed during horizontal walking. Primates commonly engage in both arboreal walking and vertical climbing, and this makes them an ideal taxa in which to compare these locomotor forms. Additionally, primates exhibit unusual limb mechanics compared with most other quadrupeds, with weight distribution biased towards the hindlimbs, a pattern that is argued to have evolved in response to the challenges of arboreal walking. Here we test an alternative hypothesis that functional differentiation between the limbs evolved initially as a response to climbing. Eight primate species were recorded locomoting on instrumented vertical and horizontal simulated arboreal runways. Forces along the axis of, and normal to, the support were recorded. During walking, all primates displayed forelimbs that were net braking, and hindlimbs that were net propulsive. In contrast, both limbs served a propulsive role during climbing. In all species, except the lorisids, the hindlimbs produced greater propulsive forces than the forelimbs during climbing. During climbing, the hindlimbs tends to support compressive loads, while the forelimb forces tend to be primarily tensile. This functional disparity appears to be body-size dependent. The tensile loading of the forelimbs versus the compressive loading of the hindlimbs observed during climbing may have important evolutionary implications for primates, and it may be the case that hindlimb-biased weight support exhibited during quadrupedal walking in primates may be derived from their basal condition of climbing thin branches.

Duke Scholars

Published In

The Journal of experimental biology

DOI

EISSN

1477-9145

ISSN

0022-0949

Publication Date

September 2017

Volume

220

Issue

Pt 17

Start / End Page

3039 / 3052

Related Subject Headings

  • Weight-Bearing
  • Trees
  • Primates
  • Physiology
  • Locomotion
  • Leg
  • Biomechanical Phenomena
  • Biological Evolution
  • Animals
  • 31 Biological sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Hanna, J. B., Granatosky, M. C., Rana, P., & Schmitt, D. (2017). The evolution of vertical climbing in primates: evidence from reaction forces. The Journal of Experimental Biology, 220(Pt 17), 3039–3052. https://doi.org/10.1242/jeb.157628
Hanna, Jandy B., Michael C. Granatosky, Pooja Rana, and Daniel Schmitt. “The evolution of vertical climbing in primates: evidence from reaction forces.The Journal of Experimental Biology 220, no. Pt 17 (September 2017): 3039–52. https://doi.org/10.1242/jeb.157628.
Hanna JB, Granatosky MC, Rana P, Schmitt D. The evolution of vertical climbing in primates: evidence from reaction forces. The Journal of experimental biology. 2017 Sep;220(Pt 17):3039–52.
Hanna, Jandy B., et al. “The evolution of vertical climbing in primates: evidence from reaction forces.The Journal of Experimental Biology, vol. 220, no. Pt 17, Sept. 2017, pp. 3039–52. Epmc, doi:10.1242/jeb.157628.
Hanna JB, Granatosky MC, Rana P, Schmitt D. The evolution of vertical climbing in primates: evidence from reaction forces. The Journal of experimental biology. 2017 Sep;220(Pt 17):3039–3052.
Journal cover image

Published In

The Journal of experimental biology

DOI

EISSN

1477-9145

ISSN

0022-0949

Publication Date

September 2017

Volume

220

Issue

Pt 17

Start / End Page

3039 / 3052

Related Subject Headings

  • Weight-Bearing
  • Trees
  • Primates
  • Physiology
  • Locomotion
  • Leg
  • Biomechanical Phenomena
  • Biological Evolution
  • Animals
  • 31 Biological sciences