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R. Lyman, M. O’Brien (1987)
Plow-zone Zooarchaeology: Fragmentation and IdentifiabilityJournal of Field Archaeology, 14
H. Bunn (1981)
Archaeological evidence for meat-eating by Plio-Pleistocene hominids from Koobi Fora and Olduvai GorgeNature, 291
R. Blumenschine (1988)
An experimental model of the timing of hominid and carnivore influence on archaeological bone assemblagesJournal of Archaeological Science, 15
T. Pickering (1999)
Taphonomic interpretations of the Sterkfontein early hominid site (Gauteng, South Africa) reconsidered in light of recent evidence
R. Blumenschine (1995)
Percussion marks, tooth marks, and experimental determinations of the timing of hominid and carnivore access to long bones at FLK Zinjanthropus, Olduvai Gorge, TanzaniaJournal of Human Evolution, 29
W. Etkin (1954)
Social Behavior and the Evolution of Man's Mental FacultiesThe American Naturalist, 88
R. Dart (1949)
The predatory implemental technique of Australopithecus.American journal of physical anthropology, 7 1
C. Marean (1991)
Measuring the post-depositional destruction of bone in archaeological assemblagesJournal of Archaeological Science, 18
H. Bunn (1991)
A Taphonomic Perspective on the Archaeology of Human OriginsAnnual Review of Anthropology, 20
A. Behrensmeyer (1975)
The taphonomy and paleoecology of Plio-Pleistocene vertebrate assemblages east of Lake Rudolf, KenyaBulletin of The Museum of Comparative Zoology, 146
C. Brain (1969)
Faunal Remains from the Bushman Rock Shelter, Eastern TransvaalSouth African Archaeological Bulletin, 24
T. Pickering, J. Wallis (1997)
Bone Modifications Resulting from Captive Chimpanzee Mastication: Implications for the Interpretation of Pliocene Archaeological FaunasJournal of Archaeological Science, 24
L. Binford, J. Bertram (1977)
Bone Frequencies and Attritional Processes. in for Theory Building In Archaeology. Essays On Faunal Remains, Aquatic Resources, Spatial Analysis, and Systematic Modeling, Edited By Lewis R. Binford. Academic Press, New York
S. Washburn, C. Lancaster (1968)
The Evolution of Hunting
R. Blumenschine (1986)
Carcass consumption sequences and the archaeological distinction of scavenging and huntingJournal of Human Evolution, 15
Laurence Bartram, C. Marean (1999)
Explaining the “Klasies Pattern”: Kua Ethnoarchaeology, the Die Kelders Middle Stone Age Archaeofauna, Long Bone Fragmentation and Carnivore RavagingJournal of Archaeological Science, 26
W. Haglund, Donald Reay, D. Swindler (1989)
Canid scavenging/disarticulation sequence of human remains in the Pacific Northwest.Journal of forensic sciences, 34 3
S. Capaldo (1997)
Experimental determinations of carcass processing by Plio-Pleistocene hominids and carnivores at FLK 22 (Zinjanthropus). Olduvai Gorge, Tanzania.Journal of human evolution, 33 5
L. Binford (1984)
Faunal remains from Klasies River mouth
C. Marean, C. Ehrhardt (1995)
Paleoanthropological and paleoecological implications of the taphonomy of a sabertooth's denJournal of Human Evolution, 29
C. Brain (1970)
New Finds at the Swartkrans Australopithecine SiteNature, 225
R. Ardrey (1961)
African Genesis: A Personal Investigation into the Animal Origins and Nature of Man
G. Haynes (1983)
A guide for differentiating mammalian carnivore taxa responsible for gnaw damage to herbivore limb bonesPaleobiology, 9
L. Wells (1969)
Faunal Subdivision of the Quaternary in Southern AfricaSouth African Archaeological Bulletin, 24
M. Voorhies (1969)
Taphonomy and population dynamics of an early Pliocene vertebrate fauna, Knox County, NebraskaRocky Mountain Geology, 8
R. Dart (1959)
Further light on australopithecine humeral and femoral weapons.American journal of physical anthropology, 17 2
J. Moggi-Cecchi, J. Moggi-Cecchi, Phillip Tobias, A. Beynon (1998)
The mixed dentition and associated skull fragments of a juvenile fossil hominid from Sterkfontein, South Africa.American journal of physical anthropology, 106 4
W. Haglund, Donald Reay, D. Swindler (1988)
Tooth mark artifacts and survival of bones in animal scavenged human skeletons.Journal of forensic sciences, 33 4
A. Sutcliffe (1970)
Spotted Hyaena: Crusher, Gnawer, Digester and Collector of BonesNature, 227
S. Capaldo, R. Blumenschine (1994)
A Quantitative Diagnosis of Notches Made by Hammerstone Percussion and Carnivore Gnawing on Bovid Long BonesAmerican Antiquity, 59
P. Tobias, A. Hughes (1969)
The New Witwatersrand University Excavation at Sterkfontein: Progress Report, Some Problems and First ResultsSouth African Archaeological Bulletin, 24
A. Turner (1989)
Sample selection, schlepp effects and scavenging: the implications of partial recovery for interpretations of the terrestrial mammal assemblage from Klasies River MouthJournal of Archaeological Science, 16
C. Marean, Lillian Spencer, R. Blumenschine, S. Capaldo (1992)
Captive hyaena bone choice and destruction, the Schlepp effect and olduvai archaeofaunasJournal of Archaeological Science, 19
R. Blumenschine, C. Marean, S. Capaldo (1996)
Blind tests of inter-analyst correspondence and accuracy in the identification of cut marks, percussion marks and carnivore tooth marks on bone surfacesJournal of Archaeological Science, 23
P. Villa, Eric Mahieu (1991)
Breakage patterns of human long bonesJournal of Human Evolution, 21
T. Pickering (2002)
Reconsideration of criteria for differentiating faunal assemblages accumulated by hyenas and hominidsInternational Journal of Osteoarchaeology, 12
C. Marean, Soo Kim (1998)
Mousterian Large‐Mammal Remains from Kobeh Cave Behavioral Implications for Neanderthals and Early Modern Humans1Current Anthropology, 39
C. Brain (1972)
An Attempt to Reconstruct the Behaviour of Australopithecines: The Evidence for Interpersonal Violence, 7
C. Marean, Carol Frey (1997)
Animal Bones from Caves to Cities: Reverse Utility Curves as Methodological ArtifactsAmerican Antiquity, 62
C. Marean, Lillian Spencer (1991)
Impact of Carnivore Ravaging on Zooarchaeological Measures of Element AbundanceAmerican Antiquity, 56
H. Bunn (1982)
Meat-eating and human evolution : studies in the diet and subsistence patterns of Plio-Pleistocene hominids in East Africa
Y. Lam, Xingbin Chen, C. Marean, Carol Frey (1998)
Bone Density and Long Bone Representation in Archaeological Faunas: Comparing Results from CT and Photon DensitometryJournal of Archaeological Science, 25
R. Dart (1960)
The Bone Tool‐Manufacturing Ability of Australopithecus PrometheusAmerican Anthropologist, 62
T. White (1993)
Prehistoric cannibalism at Mancos 5MTUMR-2346
A. Turner (1988)
Relative scavenging opportunities for East and South African plio-Pleistocene hominidsJournal of Archaeological Science, 15
K. Cruz-Uribe (1991)
Distinguishing Hyena from Hominid Bone AccumulationsJournal of Field Archaeology, 18
A. Behrensmeyer (1978)
Taphonomic and ecologic information from bone weatheringPaleobiology, 4
R. Blumenschine, M. Selvaggio (1988)
Percussion marks on bone surfaces as a new diagnostic of hominid behaviourNature, 333
C. Marean (1989)
Sabertooth cats and their relevance for early hominid diet and evolutionJournal of Human Evolution, 18
R. Dart (1957)
The Osteodontokeratic Culture Of Australopithecus Prometheus
H. Bunn, Ellen Kroll, S. Ambrose, A. Behrensmeyer, L. Binford, R. Blumenschine, R. Klein, H. Mchenry, C. O'brien, J. Wymer (1986)
Systematic Butchery by Plio/Pleistocene Hominids at Olduvai Gorge, Tanzania [and Comments and Reply]Current Anthropology, 27
T. Pickering (2001)
Carnivore voiding: a taphonomic process with the potential for the deposition of forensic evidence.Journal of forensic sciences, 46 2
R. Blumenschine, H. Bunn, V. Geist, F. Ikawa-Smith, C. Marean, A. Payne, J. Tooby, N. Merwe (1987)
Characteristics of an Early Hominid Scavenging Niche [and Comments and Reply]Current Anthropology, 28
J. Robinson, R. Mason (1962)
Australopithecines and Artefacts at SterkfonteinSouth African Archaeological Bulletin, 17
M. Eggert (1987)
On the alleged complexity of early and recent iron smelting in Africa: Further comments on the preheating hypothesisJournal of Field Archaeology, 14
New taphonomic data on the Sterkfontein Member 4 (South Africa) fossil hominid assemblage are presented. The previous estimate of hominid individuals represented in the deposit (45) is increased to 87. New minimum numbers of hominid skeletal elements are provided, and incidences of bone surface damage inflicted by prehistoric biological agents are summarized. The hominid sample from Member 4 is composed predominately of gnathic remains and has a paucity of postcrania. This dearth of postcrania limits, to some extent, inferences about the formation of the Sterkfontein assemblage. However, carnivore tooth marks on some fossil specimens and an overall broad similarity in patterns of skeletal part representation between Sterkfontein and primate bone assemblages created by extant carnivores suggest that carnivores did have some involvement in the accumulation of the fossil hominid assemblage. Thus, this study provides support for the “carnivore‐collecting hypothesis” of Brain (Brain [1981] The Hunters or the Hunted? Chicago: University of Chicago Press), which implicates large carnivores as prominent collecting agents of hominid body parts in Sterkfontein Member 4. Evidence of bone surface damage is, however, too scant to make confident inferences about specific carnivore taxon/taxa involved in hominid bone collection at the site. Am J Phys Anthropol, 2004. © 2004 Wiley‐Liss, Inc.
American Journal of Physical Anthropology – Wiley
Published: Jan 1, 2004
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