The sixth skull cap of Pithecanthropus erectus
Bibliographic Data
| ID | 8319360 |
|---|---|
| Authors | Teuku Jacob (Universitas Gadjah Mada, corresponding author) |
| Year | 1966 |
| Volume | 25 |
| Issue | 3 |
| Pages | 243-259 |
| Publication date | 1966-11-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | American Journal of Physical Anthropology (JOURNAL) |
| Journal identifiers | ISSN: 0002-9483 • E-ISSN: 1096-8644 |
| Publisher | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/ajpa.1330250305 |
| PMID | 5971500 |
| OpenAlex | W2097505402 |
| Language | EN |
| Citations received | 26 |
| References cited | 5 |
The sixth skull cap of Pithecanthropus erectus (or skull V, since the Modjokerto skull has not been given a number) was found in the upper layers of the Trinil beds of Sangiran (Central Java) in 1963, associated with fossils of the Sino‐Malayan fauna. No stone tools were discovered in direct association with the find. The specimen consists of the occipital, both parietals, both temporals, sphenoid fragments, the frontal and the left zygomatic bone. We consider the skull to be a male in his early twenties. The occipital, parietal, frontal and temporal bones demonstrate definite pithecanthropine characteristics, and the cranial capacity is estimated to be 975 cm 3 . Of the superstructures, the supraorbital torus is extraodinarily thick, approaching the condition in Australopithecus boisei and Rhodesian man. And the sagittal torus is certainly higher than in skulls I and II, but lower than in skull IV. In addition, the angle between the occipital and nuchal planes is larger than in the previous finds. As revealed by various features, the gap between the robustness of skull IV on one hand, and skulls I, II and III on the other, is bridged by the present find. There is no reasonable taxonomic need to ascribe this specimen to a new species, because it seems to be merely an intrapopulational variant of the same species. Other skulls of P. erectus suggest that the bregmatic eminence, and hence the vertex, is invariably situated at bregma, but this new skull cap deviates from the pattern. Its pteric regions disclose the anthropoid X and I types. The middle meningeal groove pattern is similar to other Pithecanthropus skulls; however, it betrays a known anomaly in that the main stem is covered for a short distance by a bony plate. The mastoid process is fairly well developed, and is also well pneumatized as in P. pekinensis , with its air cells invading the pronounced supramastoid crest. The zygomatic bone, the first one recovered of P. erectus , does not show characters of particular importance. In fact, its thickness is in the range of modern man. We would like to stress that the absence of the cranial base does not necessarily indicate that the specimen must be a poor victim of cannibalism, since the morphology of the base renders it more susceptible to post‐mortem natural traumata
Australopithecus · Biology · Homo erectus · Occipital bone · Pleistocene · Skull · Anatomy · Evolution and Paleontology Studies · Geology · Ichthyology and Marine Biology · Paleontology · Paleontology and Evolutionary Biology
Variation in hominid brain size
Magnetostratigraphy of Hominid Fossil Bearing Formations in Sangiran and Mojokerto, Java
Conceptual Progress in Physical Anthropology
The Morphologic Variations of the Supramastoid Crest and Tubercles
Literaturverzeichnis
Functional reconstruction of the supralaryngeal vocal tract of fossil human
An investigation into the usefulness of a cladistic approach to the study of the origin of anatomically modern humans
The parietal bone of indonesian homo erectus
Defining Homo erectus
The First Boat People
Position of the posterior skullcap fragment from Sendang Klampok (Sangiran Dome, Java, Indonesia) among the Javanese Homo erectus record
Cranial morphology of Javanese Homo erectus
Dmanisi and dispersal
The Indonesian Homo erectus brain endocasts revisited
Vertesszöllös and the Presapiens theory
Variation in the pattern of cranial venous sinuses and hominid phylogeny
Natural history ofHomo erectus
Palaeoanthropological discoveries in Indonesia with special reference to the finds of the last two decades
Internal cranial features of the Mojokerto child fossil (East Java, Indonesia)
Hominid ECV versus time
Quantitative and qualitative trends in human sapientization
Were the Spy fossils evolutionary intermediates between Classic Neandertal and Modern Man
On the autapomorphic traits of Homo erectus
New reconstruction and morphological description of a Homo erectus cranium
Developmental age and taxonomic affinity of the Mojokerto child, Java, Indonesia
New Hominid Finds m Indonesia and their Affinities
| Unique citing works | 26 |
|---|---|
| Citations per year | 0,44 |
| Citation span | 1967 - 2015 (49) |
| Citation velocity | historical |
| Highly cited | No |
| Citation types | Neutral: 22 |