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contributor authorAnderst, William J.
contributor authorDonaldson, III ,William F.
contributor authorLee, Joon Y.
contributor authorKang, James D.
date accessioned2017-05-09T00:56:39Z
date available2017-05-09T00:56:39Z
date issued2013
identifier issn0148-0731
identifier otherbio_135_6_061007.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/151046
description abstractThe effects of degeneration and surgery on cervical spine mechanics are commonly evaluated through in vitro testing and finite element models derived from these tests. The objectives of the current study were to estimate the load applied to the C2 vertebra during in vivo functional flexionextension and to evaluate the effects of anterior cervical arthrodesis on spine kinetics. Spine and head kinematics from 16 subjects (six arthrodesis patients and ten asymptomatic controls) were determined during functional flexionextension using dynamic stereo Xray and conventional reflective markers. Subjectspecific inverse dynamics models, including three flexor muscles and four extensor muscles attached to the skull, estimated the force applied to C2. Total force applied to C2 was not significantly different between arthrodesis and control groups at any 10 deg increment of head flexionextension (all p values ≥ 0.937). Forces applied to C2 were smallest in the neutral position, increased slowly with flexion, and increased rapidly with extension. Muscle moment arms changed significantly during flexionextension, and were dependent upon the direction of head motion. The results suggest that in vitro protocols and finite element models that apply constant loads to C2 do not accurately represent in vivo cervical spine kinetics.
publisherThe American Society of Mechanical Engineers (ASME)
titleSubject Specific Inverse Dynamics of the Head and Cervical Spine During in Vivo Dynamic Flexion Extension
typeJournal Paper
journal volume135
journal issue6
journal titleJournal of Biomechanical Engineering
identifier doi10.1115/1.4023524
journal fristpage61007
journal lastpage61007
identifier eissn1528-8951
treeJournal of Biomechanical Engineering:;2013:;volume( 135 ):;issue: 006
contenttypeFulltext


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