Meningeal arterial patterns in great apes
Implications for hominid vascular evolution
Datos Bibliográficos
| ID | 8314775 |
|---|---|
| Autores | D Falk (0000-0003-1654-0469, Albany State University, autor de correspondencia) |
| Año | 1993 |
| Volumen | 92 |
| Número | 1 |
| Páginas | 81-97 |
| Fecha de publicación | 1993-09-01 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | American Journal of Physical Anthropology (JOURNAL) |
| Identificadores de la revista | ISSN: 0002-9483 • E-ISSN: 1096-8644 |
| Editorial | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/ajpa.1330920107 |
| PMID | 8238293 |
| OpenAlex | W2112088529 |
| Idioma | EN |
| Citas recibidas | 25 |
| Referencias citadas | 14 |
Arterial meningeal patterns were observed for 100 hemispheres from great ape endocasts ( Pan paniscus, Pan troglodytes, Gorilla gorilla , and Pongo pygmaeus ). Eight patterns emerged based on the relative contributions to the walls and dura mater of the middle part of the braincase of meningeal arteries that stem from two sources. These arteries enter the braincase through either the orbit (delivering blood from the internal carotid artery) or through the base of the middle cranial fossa (via the middle meningeal artery whose blood comes from the external carotid artery). The three genera of apes manifest different frequencies of the eight, patterns, with orangutans highly dependent on orbital meningeal arteries at one extreme, and chimpanzees showing the greatest reliance on the middle meningeal artery at the other. As was the case in an earlier study of rhesus monkeys, there is a trend across the two genera of African apes for increased mean cranial capacity to be associated with increased reliance on the internal carotid artery for supplying the middle portion of the braincase. However, unlike the case for macaques, this trend does not reach statistical significance in African apes. Because it is rare for humans to manifest significant arterial contributions from the orbit to the middle cranial fossa, the comparative data on monkeys, apes, and humans suggest that, during the course of vascular evolution in Homo , the middle meningeal artery eventually took over supply of the entire middle cranial fossa. This hypothesis should be tested in the hominid fossil record. Earlier work on meningeal arterial patterns in apes has traditionally relied on Adachi's system that was determined from humans and focuses on the origin of the middle branch of the middle meningeal artery. As a result, the extensive orbital contributions to the middle portion of the braincase that characterize apes were not recognized and the eight patterns described in this paper were often erroneously assigned to the three patterns that adequately describe only humans. Adachi's system should therefore be abandoned for nonhuman primates and early hominids. A correct understanding of meningeal arterial evolution cannot be achieved until the orbital contributions to the meningeal arteries are recognized and incorporated into an evolutionary study that spans from apes to fossil hominids to living people. © 1993 Wiley‐Liss, Inc
Biology · Evolutionary biology · Comparative Animal Anatomy Studies · Hemispheric Asymmetry in Neuroscience · Primate Behavior and Ecology
The Brain of LB1, Homo floresiensis
Functional Craniology, Human Evolution, and Anatomical Constraints in the Neanderthal Braincase
The Endocast of the Late Pleistocene Human Skull from Hofmeyr
Internal carotid supply to the parietal meninges
The evolution of the meningeal vascular system in the human genus
Comparative endocranial vascular changes due to craniosynostosis and artificial cranial deformation
Reply to Dr. Diamon
Carotid foramen size in the human skull tracks developmental changes in cerebral blood flow and brain metabolism
A quantitative and qualitative reanalysis of the endocast from the juvenileParanthropus specimen l338y-6 from Omo, Ethiopia
Assessing endocranial variations in great apes and humans using 3D data from virtual endocasts
Endocasts and meningeal vascular patterns
Endocranial cast of HexianHomo erectus from South China
Morphological differences between minicolumns in human and nonhuman primate cortex
A new brain endocast of Homo erectus from Hulu Cave, Nanjing, China
Variations and asymmetries in regional brain surface in the genus Homo
Variations in size, shape and asymmetries of the third frontal convolution in hominids
Paleoneurology of an "early" Neandertal
Internal cranial anatomy of the type specimen of Pan paniscus and available data for study
The taxonomic status of the Chemeron temporal (KNM-BC 1)
Further data about venous channels in South African Plio-Pleistocene hominids
Geometric morphometrics and paleoneurology
The brain of Homo habilis
The endocast of StW 573 ("Little Foot") and hominin brain evolution
The posterior border of the sphenoid greater wing and its phylogenetic usefulness in human evolution
Sinus and meningeal vessel pattern changes induced by artificial cranial deformation
The endocranial course of the middle meningeal artery in American Whites and American Negroes
Homologies of the stapedial artery in humans, with a reconstruction of the primitive stapedial artery configuration of euprimates
Homology and evolution of the orbitotemporal venous sinuses of humans
Meningeal arteries in rhesus macaques ( Macaca mulatta )
A reanalysis of the South African australopithecine natural endocasts
Les veines méningées moyennes des Australopithèques
| Obras citantes distintas | 25 |
|---|---|
| Citas por año | 0,78 |
| Intervalo de citas | 1994 - 2023 (30) |
| Velocidad de citación | historical |
| Altamente citado | No |
| Tipos de cita | Neutras: 25 |