Literature DB >> 9988382

Kinematic data on primate head and neck posture: implications for the evolution of basicranial flexion and an evaluation of registration planes used in paleoanthropology.

D S Strait1, C F Ross.   

Abstract

Kinematic data on primate head and neck posture were collected by filming 29 primate species during locomotion. These were used to test whether head and neck posture are significant influences on basicranial flexion and whether the Frankfurt plane can legitimately be employed in paleoanthropological studies. Three kinematic measurements were recorded as angles relative to the gravity vector, the inclination of the orbital plane, the inclination of the neck, and the inclination of the Frankfurt plane. A fourth kinematic measurement was calculated as the angle between the neck and the orbital plane (the head-neck angle [HNA]). The functional relationships of basicranial flexion were examined by calculating the correlations and partial correlations between HNA and craniometric measurements representing basicranial flexion, orbital kyphosis, and relative brain size (Ross and Ravosa [1993] Am. J. Phys. Anthropol. 91:305-324). Significant partial correlations were observed between relative brain size and basicranial flexion and between HNA and orbital kyphosis. This indicates that brain size, rather than head and neck posture, is the primary influence on flexion, while the degree of orbital kyphosis may act to reorient the visual field in response to variation in head and neck posture. Regarding registration planes, the Frankfurt plane was found to be horizontal in humans but inclined in all nonhuman primates. In contrast, nearly all primates (including humans) oriented their orbits such that they faced anteriorly and slightly inferiorly. These results suggest that for certain functional craniometric studies, the orbital plane may be a more suitable registration plane than Frankfurt "Horizontal."

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Year:  1999        PMID: 9988382     DOI: 10.1002/(SICI)1096-8644(199902)108:2<205::AID-AJPA6>3.0.CO;2-F

Source DB:  PubMed          Journal:  Am J Phys Anthropol        ISSN: 0002-9483            Impact factor:   2.868


  8 in total

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2.  Craniofacial skeletal response to encephalization: How do we know what we think we know?

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4.  Human rather than ape-like orbital morphology allows much greater lateral visual field expansion with eye abduction.

Authors:  Eric Denion; Martin Hitier; Eric Levieil; Frédéric Mouriaux
Journal:  Sci Rep       Date:  2015-07-20       Impact factor: 4.379

5.  Unique human orbital morphology compared with that of apes.

Authors:  Eric Denion; Martin Hitier; Vincent Guyader; Audrey-Emmanuelle Dugué; Frédéric Mouriaux
Journal:  Sci Rep       Date:  2015-06-25       Impact factor: 4.379

6.  Ecological correlates to cranial morphology in Leporids (Mammalia, Lagomorpha).

Authors:  Brian P Kraatz; Emma Sherratt; Nicholas Bumacod; Mathew J Wedel
Journal:  PeerJ       Date:  2015-03-17       Impact factor: 2.984

7.  The variability of inner ear orientation in saurischian dinosaurs: testing the use of semicircular canals as a reference system for comparative anatomy.

Authors:  Jesús Marugán-Lobón; Luis M Chiappe; Andrew A Farke
Journal:  PeerJ       Date:  2013-08-06       Impact factor: 2.984

8.  The atlas of StW 573 and the late emergence of human-like head mobility and brain metabolism.

Authors:  Amélie Beaudet; Ronald J Clarke; Jason L Heaton; Travis R Pickering; Kristian J Carlson; Robin H Crompton; Tea Jashashvili; Laurent Bruxelles; Kudakwashe Jakata; Lunga Bam; Luc Van Hoorebeke; Kathleen Kuman; Dominic Stratford
Journal:  Sci Rep       Date:  2020-03-16       Impact factor: 4.379

  8 in total

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