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Link to original content: http://pubmed.ncbi.nlm.nih.gov/28556505/
Restoring Maximum Vertical Browsing Reach in Sauropod Dinosaurs - PubMed Skip to main page content
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. 2017 Oct;300(10):1802-1825.
doi: 10.1002/ar.23617. Epub 2017 Jun 14.

Restoring Maximum Vertical Browsing Reach in Sauropod Dinosaurs

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Restoring Maximum Vertical Browsing Reach in Sauropod Dinosaurs

Gregory S Paul. Anat Rec (Hoboken). 2017 Oct.
Free article

Abstract

The ongoing controversy centered on neck posture and function in sauropod dinosaurs is misplaced for a number of reasons. Because of an absence of pertinent data it is not possible to accurately restore the posture and range of motion in long necked fossil animals, only gross approximations are possible. The existence of a single "neutral posture" in animals with long, slender necks may not exist, and its relationship to feeding habits is weak. Restorations of neutral osteological neck posture based on seemingly detailed diagrams of cervical articulations are not reliable because the pictures are not sufficiently accurate due to a combination of illustration errors, and distortion of the fossil cervicals. This is all the more true because fossil cervical series lack the critical inter-centra cartilage. Maximum vertical reach is more readily restorable and biologically informative for long necked herbivores. Modest extension of 10° between each caudal cervical allowed high shouldered sauropods to raise the cranial portion of their necks to vertical postures that allowed them to reach floral resources far higher than seen in the tallest mammals. This hypothesis is supported by the dorsally extended articulation of the only known co-fused sauropod cervicals. Many sauropods appear to have been well adapted for rearing in order to boost vertical reach, some possessed retroverted pelves that may have allowed them to walk slowly while bipedal. A combination of improved high browsing abilities and sexual selection probably explains the unusually long necks of tall ungulates and super tall sauropods. Anat Rec, 2017. © 2017 Wiley Periodicals, Inc. Anat Rec, 300:1802-1825, 2017. © 2017 Wiley Periodicals, Inc.

Keywords: biomechanics; energetics; feeding; functional morphology; giraffe; life restorations; neck; paleoecology; sauropod.

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