TY - JOUR
T1 - Bipedal and quadrupedal locomotion in chimpanzees
AU - Pontzer, Herman
AU - Raichlen, David A.
AU - Rodman, Peter S.
N1 - Funding Information:
Michael D. Sockol collected the oxygen consumption data as part of his doctoral research. We thank him for his immense effort. His work was supported by an NSF Doctoral Dissertation Improvement Grant (P.S.R. was the PI). Kinematic and kinetic data collection was led by D.A.R. and H.P. and supported by a L.S.B. Leakey Foundation grant. Daniel Lieberman and Andrew Biewener generously contributed equipment for data collection. Jeremy DeSilva and three anonymous reviewers provided helpful comments that improved this paper.
PY - 2014/1
Y1 - 2014/1
N2 - Chimpanzees (Pan troglodytes) habitually walk both bipedally and quadrupedally, and have been a common point of reference for understanding the evolution of bipedal locomotion in early ape-like hominins. Here we compare the kinematics, kinetics, and energetics of bipedal and quadrupedal walking and running in a sample of five captive chimpanzees. Kinematics were recorded using sagittal-plane digital high-speed video of treadmill trials. Kinetics were recorded via a forceplate. Metabolic energy cost was measured via steady-state oxygen consumption during treadmill trials. Consistent with previous work on chimpanzees and other hominoids, we found that the spatiotemporal characteristics, joint angles, ground reaction forces, and metabolic cost of bipedal and quadrupedal locomotion are similar in chimpanzees. Notable differences include hip and trunk angles, which reflected a more orthograde trunk posture during bipedalism, and mediolateral ground reaction forces, which were larger during bipedal walking. Stride frequencies were also higher (and step lengths shorter) during bipedal trials. Bipedal and quadrupedal walking among chimpanzees was similar to that reported for bonobos, gibbons, and other primates. The similarity in cost between bipedal and quadrupedal trials suggests that the adoption of bipedal walking would have had no effect on walking costs for early ape-like hominins. However, habitual bipedalism may have favored modifications of the hip to allow a more orthograde posture, and of the hind limb abductor mechanisms to efficiently exert mediolateral ground forces.
AB - Chimpanzees (Pan troglodytes) habitually walk both bipedally and quadrupedally, and have been a common point of reference for understanding the evolution of bipedal locomotion in early ape-like hominins. Here we compare the kinematics, kinetics, and energetics of bipedal and quadrupedal walking and running in a sample of five captive chimpanzees. Kinematics were recorded using sagittal-plane digital high-speed video of treadmill trials. Kinetics were recorded via a forceplate. Metabolic energy cost was measured via steady-state oxygen consumption during treadmill trials. Consistent with previous work on chimpanzees and other hominoids, we found that the spatiotemporal characteristics, joint angles, ground reaction forces, and metabolic cost of bipedal and quadrupedal locomotion are similar in chimpanzees. Notable differences include hip and trunk angles, which reflected a more orthograde trunk posture during bipedalism, and mediolateral ground reaction forces, which were larger during bipedal walking. Stride frequencies were also higher (and step lengths shorter) during bipedal trials. Bipedal and quadrupedal walking among chimpanzees was similar to that reported for bonobos, gibbons, and other primates. The similarity in cost between bipedal and quadrupedal trials suggests that the adoption of bipedal walking would have had no effect on walking costs for early ape-like hominins. However, habitual bipedalism may have favored modifications of the hip to allow a more orthograde posture, and of the hind limb abductor mechanisms to efficiently exert mediolateral ground forces.
KW - Biomechanics
KW - Energetics
KW - Hominoid
KW - Human evolution
KW - Ranging ecology
UR - http://www.scopus.com/inward/record.url?scp=84891659618&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84891659618&partnerID=8YFLogxK
U2 - 10.1016/j.jhevol.2013.10.002
DO - 10.1016/j.jhevol.2013.10.002
M3 - Article
C2 - 24315239
AN - SCOPUS:84891659618
SN - 0047-2484
VL - 66
SP - 64
EP - 82
JO - Journal of human evolution
JF - Journal of human evolution
IS - 1
ER -