Mechanical Properties of the Human Cervical Spine as Shown by Three-Dimensional Load–Displacement Curves

尸体痉挛 医学 生物力学 旋转(数学) 运动范围 弯矩 颈椎 流离失所(心理学) 椎间盘 角位移 解剖 颈椎 固定装置 口腔正畸科 结构工程 几何学 外科 数学 机械工程 工程类 心理治疗师 心理学
作者
Manohar M. Panjabi,Joseph J. Crisco,Anita Vasavada,Takenori Oda,Jacek Cholewicki,Kimio Nibu,Eon K. Shin
出处
期刊:Spine [Ovid Technologies (Wolters Kluwer)]
卷期号:26 (24): 2692-2700 被引量:453
标识
DOI:10.1097/00007632-200112150-00012
摘要

The mechanical properties of multilevel human cervical spines were investigated by applying pure rotational moments to each specimen and measuring multidirectional intervertebral motions.To document intervertebral main and coupled motions of the cervical spine in the form of load-displacement curves.Although a number of in vivo and in vitro studies have attempted to delineate normal movement patterns of the cervical spine, none has explored the complexity of the whole cervical spine as a three-dimensional structure.Sixteen human cadaveric specimens (C0-C7) were used for this study. Pure rotational moments of flexion-extension, bilateral axial torque, and bilateral lateral bending were applied using a specially designed loading fixture. The resulting intervertebral motions were recorded using stereophotogrammetry and depicted as a series of load-displacement curves.The resulting load-displacement curves were found to be nonlinear, and both rotation and translation motions were coupled with main motions. With flexion-extension moment loading, the greatest degree of flexion occurred at C1-C2 (12.3 degrees), whereas the greatest degree of extension was observed at C0-C1 (20.2 degrees). With axial moment loading, rotation at C1-C2 was the largest recorded (56.7 degrees). With lateral bending moments, the average range of motion for all vertebral levels was 7.9 degrees.The findings of the present study are relevant to the clinical practice of examining motions of the cervical spine in three dimensions and to the understanding of spinal trauma and degenerative diseases.
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