Comparative Anatomy of the Hind Limb Vessels of the Bearded Capuchins (Sapajus libidinosus) with Apes, Baboons, andCebus capucinus: With Comments on the Vessels' Role in Bipedalism

Author:

Aversi-Ferreira Roqueline A. G. M. F.1234,de Abreu Tainá25,Pfrimer Gabriel A.5,Silva Sylla F.2,Ziermann Janine M.1,Carneiro-e-Silva Frederico O.5,Tomaz Carlos4,Tavares Maria Clotilde H.4,Maior Rafael S.4,Aversi-Ferreira Tales A.12ORCID

Affiliation:

1. Department of Anatomy, Howard University College of Medicine, 520 W Street NW, Numa Adams Building, Washington, DC 20059, USA

2. Laboratory of Anthropology, Biochemistry, Neuroscience and Primates' Behavior (LABINECOP), Federal University of Tocantins, Avenida NS 15 ALC NO 14 109 Norte, 77001-090 Palmas, TO, Brazil

3. Graduate School of Animal Biology, Institute of Biology, University of Brasilia, Darcy Ribeiro Campus, 70910-900 Brasília, DF, Brazil

4. Department of Physiology, Laboratory of Neuroscience and Behavior, University of Brasilia, Darcy Ribeiro Campus, 70910-900 Brasília, DF, Brazil

5. Graduate School of Veterinary, Federal University of Uberlândia, Rua Ceará S/N Bloco 2D Campus Umuarama, 38400-902 Uberlândia, MG, Brazil

Abstract

Capuchin monkeys are known to exhibit sporadic bipedalism while performing specific tasks, such as cracking nuts. The bipedal posture and locomotion cause an increase in the metabolic cost and therefore increased blood supply to lower limbs is necessary. Here, we present a detailed anatomical description of the capuchin arteries and veins of the pelvic limb ofSapajus libidinosusin comparison with other primates. The arterial pattern of the bearded capuchin hind limb is more similar to other quadrupedalCebusspecies. Similarities were also found to the pattern observed in the quadrupedPapio, which is probably due to a comparable pelvis and the presence of the tail.Sapajus' traits show fewer similarities when compared to great apes and modern humans. Moreover, the bearded capuchin showed unique patterns for the femoral and the short saphenous veins. Although this species switches easily from quadrupedal to bipedal postures, our results indicate that the bearded capuchin has no specific or differential features that support extended bipedal posture and locomotion. Thus, the explanation for the behavioral differences found among capuchin genera probably includes other aspects of their physiology.

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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