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Biomechanical and morphological determinants of maximal jumping performance in callitrichine monkeys.

Publication ,  Journal Article
Boulinguez-Ambroise, G; Boyer, DM; Dunham, NT; Yapuncich, GS; Bradley-Cronkwright, M; Zeininger, A; Schmitt, D; Young, JW
Published in: J Exp Biol
September 15, 2024

Jumping is a crucial behavior in fitness-critical activities including locomotion, resource acquisition, courtship displays and predator avoidance. In primates, paleontological evidence suggests selection for enhanced jumping ability during their early evolution. However, our interpretation of the fossil record remains limited, as no studies have explicitly linked levels of jumping performance with interspecific skeletal variation. We used force platform analyses to generate biomechanical data on maximal jumping performance in three genera of callitrichine monkeys falling along a continuum of jumping propensity: Callimico (relatively high propensity jumper), Saguinus (intermediate jumping propensity) and Callithrix (relatively low propensity jumper). Individuals performed vertical jumps to perches of increasing height within a custom-built tower. We coupled performance data with high-resolution micro-CT data quantifying bony features thought to reflect jumping ability. Levels of maximal performance between species - e.g. maximal take-off velocity of the center of mass (CoM) - parallel established gradients of jumping propensity. Both biomechanical analysis of jumping performance determinants (e.g. CoM displacement, maximal force production and peak mechanical power during push-off) and multivariate analyses of bony hindlimb morphology highlight different mechanical strategies among taxa. For instance, Callimico, which has relatively long hindlimbs, followed a strategy of fully extending of the limbs to maximize CoM displacement - rather than force production - during push-off. In contrast, relatively shorter-limbed Callithrix depended mostly on relatively high push-off forces. Overall, these results suggest that leaping performance is at least partially associated with correlated anatomical and behavioral adaptations, suggesting the possibility of improving inferences about performance in the fossil record.

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Published In

J Exp Biol

DOI

EISSN

1477-9145

Publication Date

September 15, 2024

Volume

227

Issue

18

Location

England

Related Subject Headings

  • X-Ray Microtomography
  • Species Specificity
  • Physiology
  • Male
  • Locomotion
  • Female
  • Callitrichinae
  • Biomechanical Phenomena
  • Animals
  • 31 Biological sciences
 

Citation

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Boulinguez-Ambroise, G., Boyer, D. M., Dunham, N. T., Yapuncich, G. S., Bradley-Cronkwright, M., Zeininger, A., … Young, J. W. (2024). Biomechanical and morphological determinants of maximal jumping performance in callitrichine monkeys. J Exp Biol, 227(18). https://doi.org/10.1242/jeb.247413
Boulinguez-Ambroise, Grégoire, Doug M. Boyer, Noah T. Dunham, Gabriel S. Yapuncich, Madison Bradley-Cronkwright, Angel Zeininger, Daniel Schmitt, and Jesse W. Young. “Biomechanical and morphological determinants of maximal jumping performance in callitrichine monkeys.J Exp Biol 227, no. 18 (September 15, 2024). https://doi.org/10.1242/jeb.247413.
Boulinguez-Ambroise G, Boyer DM, Dunham NT, Yapuncich GS, Bradley-Cronkwright M, Zeininger A, et al. Biomechanical and morphological determinants of maximal jumping performance in callitrichine monkeys. J Exp Biol. 2024 Sep 15;227(18).
Boulinguez-Ambroise, Grégoire, et al. “Biomechanical and morphological determinants of maximal jumping performance in callitrichine monkeys.J Exp Biol, vol. 227, no. 18, Sept. 2024. Pubmed, doi:10.1242/jeb.247413.
Boulinguez-Ambroise G, Boyer DM, Dunham NT, Yapuncich GS, Bradley-Cronkwright M, Zeininger A, Schmitt D, Young JW. Biomechanical and morphological determinants of maximal jumping performance in callitrichine monkeys. J Exp Biol. 2024 Sep 15;227(18).
Journal cover image

Published In

J Exp Biol

DOI

EISSN

1477-9145

Publication Date

September 15, 2024

Volume

227

Issue

18

Location

England

Related Subject Headings

  • X-Ray Microtomography
  • Species Specificity
  • Physiology
  • Male
  • Locomotion
  • Female
  • Callitrichinae
  • Biomechanical Phenomena
  • Animals
  • 31 Biological sciences