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contributor authorEno M. Yliniemi
contributor authorJoseph A. Pellettiere
contributor authorDavid J. Nuckley
contributor authorChris E. Perry
contributor authorRandal P. Ching
contributor authorErica J. Doczy
date accessioned2017-05-09T00:31:42Z
date available2017-05-09T00:31:42Z
date copyrightMay, 2009
date issued2009
identifier issn0148-0731
identifier otherJBENDY-26947#051001_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/139946
description abstractAlthough the catapult phase of pilot ejections has been well characterized in terms of human response to compressive forces, the effect of the forces on the human body during the ensuing ejection phases (including windblast and parachute opening shock) has not been thoroughly investigated. Both windblast and parachute opening shock have been shown to induce dynamic tensile forces in the human cervical spine. However, the human tolerance to such loading is not well known. Therefore, the main objective of this research project was to measure human tensile neck failure mechanics to provide data for computational modeling, anthropometric test device development, and improved tensile injury criteria. Twelve human cadaver specimens, including four females and eight males with a mean age of 50.1±9 years, were subjected to dynamic tensile loading through the musculoskeletal neck until failure occurred. Failure load, failure strain, and tensile stiffness were measured and correlated with injury type and location. The mean failure load for the 12 specimens was 3100±645 N, mean failure strain was 16.7±5.4%, and mean tensile stiffness was 172±54.5 N/mm. The majority of injuries (8) occurred in the upper cervical spine (Oc-C3), and none took place in the midcervical region (C3–C5). The results of this study assist in filling the existing void in dynamic tensile injury data and will aid in developing improved neck injury prevention strategies.
publisherThe American Society of Mechanical Engineers (ASME)
titleDynamic Tensile Failure Mechanics of the Musculoskeletal Neck Using a Cadaver Model
typeJournal Paper
journal volume131
journal issue5
journal titleJournal of Biomechanical Engineering
identifier doi10.1115/1.3078151
journal fristpage51001
identifier eissn1528-8951
keywordsStiffness
keywordsWounds
keywordsCervical spine
keywordsMusculoskeletal system
keywordsStress
keywordsFailure AND Muscle
treeJournal of Biomechanical Engineering:;2009:;volume( 131 ):;issue: 005
contenttypeFulltext


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