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From such great heights: The effects of substrate height and the perception of risk on lemur locomotor mechanics.

Authors :
Schapker, Nicole M.
Janisch, Judith
Myers, Lydia C.
Phelps, Taylor
Shapiro, Liza J.
Young, Jesse W.
Source :
American Journal of Biological Anthropology. Jul2024, Vol. 184 Issue 3, p1-11. 11p.
Publication Year :
2024

Abstract

Objectives: An accident during arboreal locomotion can lead to risky falls, but it remains unclear that the extent to which primates, as adept arborealists, change their locomotion in response to the perceived risk of moving on high supports in the tree canopy. By using more stable forms of locomotion on higher substrates, primates might avoid potentially fatal consequences. Materials and Methods: Using high‐speed cameras, we recorded the quadrupedal locomotion of four wild lemur species—Eulemur rubriventer, Eulemur rufifrons, Hapalemur aureus, and Lemur catta (N = 113 total strides). We quantified the height, diameter, and angular orientation of locomotor supports using remote sensors and tested the influence of support parameters on gait kinematics, specifically predicting that in response to increasing substrate height, lemurs would decrease speed and stride frequency, but increase stride length and the mean number of supporting limbs. Results: Lemurs did not adjust stride frequency on substrates of varying height. Adjustments to speed, stride length, and the mean number of supporting limbs in response to varying height often ran counter to predictions. Only E. rubriventer decreased speed and increased the mean number of supporting limbs on higher substrates. Discussion: Results suggest that quadrupedal walking is a relatively safe form of locomotion for lemurs, requiring subtle changes in gait to increase stability on higher—that is, potentially riskier—substrates. Continued investigation of the impact of height on locomotion will be important to determine how animals assess risk in their environment and how they choose to use this information to move more safely. Research Highlights: Substrate height can increase the risk of injury after a fall.Lemurs make subtle and variable adjustments to gait in response to substrate height.Substrate height will be important to include in future studies of wild primate locomotion. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
26927691
Volume :
184
Issue :
3
Database :
Academic Search Index
Journal :
American Journal of Biological Anthropology
Publication Type :
Academic Journal
Accession number :
177962331
Full Text :
https://doi.org/10.1002/ajpa.24917