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Cervical Spine Geometry in the Automotive Seated Posture: Variations with Age, Stature, and Gender

机译:汽车坐姿的颈椎几何形状:随着年龄,身材和性别的变化

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In the mid 1970s, UMTRI investigated the biomechanical properties of the head and neck using 180 "normal" adult subjects selected to fill eighteen subject groups based on age (young, mid-aged, older), gender, and stature (short, medium, and tall by gender). Lateral-view radiographs of the subjects' cervical spines and heads were taken with the subjects seated in a simulated automotive neutral posture, as well as with their necks in full-voluntary flexion and full-voluntary extension. Although the cervical spine and lower head geometry were previously measured manually and documented, new technologies have enabled computer digitization of the scanned x-ray images and a more comprehensive and detailed analysis of the variation in cervical spine and lower head geometry with subject age, stature, and gender. After scanning the radiographic images, 108 skeletal landmarks on the cervical vertebrae and 10 head landmarks were digitized. The resulting database of cervical spine and head geometry was used to study cervical spine curvature, vertebral dimensions, and head/neck orientation as functions of age, gender, and stature. The data were used to characterize neutral posture cervical spine curvatures using two methods: a curvature index and Bezier spline functions. Lateral-view vertebral dimensions were also calculated for each subject, and a cascading series of equations was developed to estimate vertebral size and shape for a selected age, stature, and gender. The orientation of the cervical spine was defined using a neck chord angle, where the neck chord was varied to use different anatomical landmarks and estimates of joint centers for the top and bottom of the neck chord. Results from the study have been incorporated into a MS-Access based software package that allows researchers and modelers to generate cervical spine geometries for occupants of a specified age, gender, and stature. The program allows selection of individual occupants from the database that meet age, stature, gender, or curvature criteria, or creation of a composite cervical spine geometry representative of the selected age, gender, and stature. This tool will allow researchers to configure and vary cervical spine geometry in computer models and experimental test setups used to study head and neck impact response and injury risk.
机译:在20世纪70年代中期,UMTRI使用180“正常”成人受试者研究了头部和颈部的生物力学特性,以填补基于年龄(年轻,中年,老年人),性别和身材(短,中等,和性别高。受试者颈刺和头部的侧视射线照片被坐在模拟汽车中性姿势中的受试者,以及颈部以全自愿屈曲和全自愿延伸。虽然先前手动测量颈椎和下头几何形状,但是新技术使计算机数字化能够对扫描的X射线图像进行计算机数字化,并更全面地详细分析颈椎和下头几何的变异,具有主体年龄,地位和性别。在扫描放射线图像后,将108个骨骼椎骨和10个头部地标的骨架地标进行数字化。由此产生的颈椎和头部几何形状用于研究宫颈脊柱曲率,椎体尺寸和头部/颈部取向作为年龄,性别和身材的功能。使用两种方法来使用数据来表征中性姿势颈椎曲率:曲率指数和Bezier样条函数。还针对每个受试者计算横向视图椎体尺寸,并且开发了一种级联方程,以估计椎体尺寸和形状,用于选定的年龄,地形和性别。使用颈部弦角定义颈椎的取向,其中颈部弦变化以利用不同的解剖标记和颈部顶部和底部的关节中心的估计。该研究的结果已被纳入基于MS访问的软件包中,允许研究人员和建模者为指定年龄,性别和身材的居住者产生颈椎几何形状。该计划允许从符合年龄,身材,性别或曲率标准的数据库中选择各个乘员,或创建代表所选年龄,性别和身材的复合颈椎几何形状。该工具将允许研究人员在计算机模型中配置和变化颈椎几何形状和用于研究头部和颈部影响响应和伤害风险的实验测试设置。

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