Morphological variation of the Pan talus relative to that of Gorilla

Author:

Harper Christine M.1ORCID,Roach Caleigh S.2,Goldstein Deanna M.3ORCID,Sylvester Adam D.4ORCID

Affiliation:

1. Department of Biomedical Sciences Cooper Medical School of Rowan University Camden New Jersey USA

2. Krieger School of Arts and Sciences The Johns Hopkins University Baltimore Maryland USA

3. Department of Anatomical Sciences, Renaissance School of Medicine Stony Brook University Stony Brook New York USA

4. Center for Functional Anatomy and Evolution The Johns Hopkins University School of Medicine Baltimore Maryland USA

Abstract

AbstractObjectivesDifferences in talar articular morphology relative to locomotion have recently been found within Pan and Gorilla. Whole‐bone talar morphology within, and shared variation among, Pan and Gorilla (sub)species, however, has yet to be investigated. Here we separately analyze talar external shape within Pan (P. t. troglodytes, P. t. schweinfurthii, P. t. verus, P. paniscus) and Gorilla (G. g. gorilla, G. b. beringei, G. b. graueri) relative to degree of arboreality and body size. Pan and Gorilla are additionally analyzed together to determine if consistent shape differences exist within the genera.Materials and MethodsTalar external shape was quantified using a weighted spherical harmonic analysis. Shape variation both within and among Pan and Gorilla was described using principal component analyses. Root mean square distances were calculated between taxon averages, and resampling statistics conducted to test for pairwise differences.ResultsP. t. verus (most arboreal Pan) talar shape significantly differs from other Pan taxa (p < 0.05 for pairwise comparisons) driven by more asymmetrical trochlear rims and a medially‐set talar head. P. t. troglodytes, P. t. schweinfurthii, and P. paniscus do not significantly differ (p > 0.05 for pairwise comparisons). All gorilla taxa exhibit significantly different talar morphologies (p < 0.007 for pairwise comparisons). The more terrestrial subspecies of G. beringei and P. troglodytes exhibit a superoinferiorly taller talar head/neck complex.DiscussionP. t. verus exhibits talar morphologies that have been previously related to more frequent arboreality. The adaptations in the more terrestrial G. beringei and P. troglodytes subspecies may serve to facilitate load transmission.

Publisher

Wiley

Subject

Paleontology,Archeology,Genetics,Anthropology,Anatomy,Epidemiology

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Trabecular bone variation in the gorilla calcaneus;American Journal of Biological Anthropology;2024-04-17

2. A statistical analysis of human talar shape and bone density distribution;Journal of Orthopaedic Research;2024-03-14

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