Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10431163 | Journal of Biomechanics | 2016 | 6 Pages |
Abstract
Therefore, a systematic comparison of standard pure moment with no compressive loading versus published and novel compressive loading techniques (follower load - FL, axial load - AL, and combined load - CL) was performed. The present study is unique in that a direct comparison to continuous cervical kinematics over the entire extension to flexion motion path was possible through an ongoing intra-institutional collaboration. The pure moment testing protocol without compression or with the application of follower load was not able to replicate the typical in-vivo segmental motion patterns throughout the entire motion path. Axial load or a combination of axial and follower load was necessary to mimic the in-vivo segmental contributions at the extremes of the extension-flexion motion path. It is hypothesized that dynamically altering the compressive loading throughout the motion path is necessary to mimic the segmental contribution patterns exhibited in-vivo.
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Authors
Kevin M. Bell, Yiguo Yan, Richard E. Debski, Gwendolyn A. Sowa, James D. Kang, Scott Tashman,