Origin and diversity of early hominin bipedalism
Bibliographic Data
| ID | 23453047 |
|---|---|
| Authors | Henry M Mchenry (corresponding author) |
| Year | 2012 |
| Pages | 205-222 |
| Publication date | 2012-03-29 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | CHAPTER |
| Venue | African Genesis (SOURCE_BOOK) |
| Publisher | Cambridge University Press (PUBLISHER • US) |
| DOI | 10.1017/cbo9781139096164.014 |
| OpenAlex | W1589980937 |
| ISBN | 9781139096164 |
| Language | EN |
| References cited | 76 |
The causes and conditions that lead to the expansion of knowledge are multiple, but sometimes there arises a singular and powerful force. For more than a half a century, Phillip Tobias has exerted such an influence on our understanding of human evolution. His influence has been profound not only from his prolific scholarship, but in his generous gift of inspiring a generation of students and colleagues. It is auspicious indeed that Taung and Tobias entered our world in the same year. What more have we learned in the 80 years that followed? First and foremost is that Dart was right: Australopithecus africanus was on the uniquely human branch of the tree of life (despite its ape-sized brain), was bipedal, and that Africa is truly the cradle of humankind as abundantly shown by discovery teams led by Tobias, Clarke , Broom , Robinson , the Leakeys, Howell , Johanson, Kimbel , White , Brunet , Hill, Senut , Pickford , Asfaw , Haile-Selassie and many others. In the rich literature on why our ancestors became bipedal appear advocates of single hypotheses and those who take a more ecumenical approach. The beginning place has to be an appreciation of historical constraints. Our last common ancestor with the animal world was constrained by the fact that it had a body of a hominoid without typical mammalian quadrupedal specialisations. Terrestrially, chimps walk quadrupedally and bipedally with equal energetic expenditure, which is about 50% more expensive than the average mammal. This fact is based on studies of two young chimps, but ongoing studies at University of California, Davis of the bioenergetics of three adult female and two male chimps confirm this finding. Does our current published sample of early hominins document the intermediate steps between ape-like and human-like gaits? There is a rich series of craniodental transformations through time from ape-like to human-like, but so far the intermediate steps between ape and human gaits are undocumented. All of the candidates for earliest hominin show signs of upright walking. The head balance of Sahelanthropus , the human-like thighs of Orrorin , the dorsally canted toes of Ardipithecus kadabba suggest the adoption of bipedality came before 6 to 5 million years ago. Between 4 and 2 million years there is abundant fossil evidence of bipedally adapted hominins, but analyses of this material often reveal surprisingly different complexes of locomotor traits that appear to indicate considerable diversity of adaptations.
Biology · Bipedalism · Diversity (politics) · Evolutionary biology · Geography · Political science · Scholarship · Sociology · Anthropology · Evolution and Paleontology Studies · History · Law · Paleontology · Pleistocene-Era Hominins and Archaeology · Primate Behavior and Ecology
Human Origins and Environmental Backgrounds
The Nariokotome Homo Erectus Skeleton
Australopithecus sediba Hand Demonstrates Mosaic Evolution of Locomotor and Manipulative Abilities
Lower Pliocene Hominid Remains from Sterkfontein
Morphological analysis of the mammalian postcranium
Lucy's limbs
A Partial Pelvis of Australopithecus sediba
Tools and Human Evolution
Running on Two or on Four Legs
Late Miocene hominids from the Middle Awash, Ethiopia
Chimpanzee locomotor energetics and the origin of human bipedalism
Climate Change and Human Evolution
The Foot and Ankle of Australopithecus sediba
The Origin of Man
Hunterian Lectures on Man's Posture
New specimens and confirmation of an early age for Australopithecus anamensis
Sterkfontein Member 2 Foot Bones of the Oldest South African Hominid
The Great Divides
Australopithecus africanus The Man-Ape of South Africa
Evolution of hominid bipedalism and prehensile capabilities
Shaping primate evolution
Early hominin limb proportions
Origin of human bipedalism
Climbing to the top
Ancestors
Lowly Origin
Encyclopedia of human evolution and prehistory
Bioenergetics and the origin of hominid bipedalism
Bipedal behavior of olive baboons ( Papio anubis ) and its relevance to an understanding of the evolution of human bipedalism
Basicranial anatomy of Plio‐Pleistocene hominids from East and South Africa
A new pelvic fragment from swartkrans and the relationship between the robust and gracile australopithecines
Pliocene hominids from the Hadar formation, Ethiopia (1973–1977)
Metrical analysis of the basicranium of extant hominoids and Australopithecus
Contemporary issues in human evolution
Morphology of the Pliocene partial hominid skeleton (A.L. 288‐1) from the Hadar formation, Ethiopia
The Maka femur and its bearing on the antiquity of human walking
Integration, phylogeny, and the hominid cranial base
Morphological and taxonomic affinities of the Olduvai ulna (OH 36)
The capitate of Australopithecus afarensis and A. africanus
The locomotor anatomy of Australopithecus afarensis
Analysis of an early hominid ulna from the Omo basin, Ethiopia
Bipedal behavior and the emergence of erect posture in man
Interpreting the posture and locomotion ofAustralopithecus afarensis
Body proportions of Homo habilis reviewed
The Human Revolution [and Comments and Reply]
The origin of hominid bipedalism re‐examined
The energetic cost of locomotion
Biomechanical interpretation of the early hominid hip
Hallucial convergence in early hominids
Body proportions inAustralopithecus afarensisandA. africanusand the origin of the genusHomo
The evolution of human bipedality
A reappraisal of early hominid phylogeny
Hominid hand use in the pliocene and pleistocene
Associated cranial and forelimb remains attributed to Australopithecus afarensis from Hadar, Ethiopia
Inferring hominoid and early hominid phylogeny using craniodental characters
Morphology of Australopithecus anamensis from Kanapoi and Allia Bay, Kenya
The context of Stw 573, an early hominid skull and skeleton from Sterkfontein Member 2
Origin of habitual terrestrial bipedalism in the ancestor of the Hominidae
The Seed-Eaters
Reconstructing Man's Pliocene Pongid Ancestor
Food Transport and the Origin of Hominid Bipedalism1
Ecology and the Protohominids
Developmental Biology and Human Evolution
Australopithecus to Homo
Plio-Pleistocene Hominid Limb Proportions
| Citation velocity | historical |
|---|---|
| Highly cited | No |