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Effect of Head and Neck Anthropometry on the Normal Range of Motion of the Cervical Spine of Prepubescent Children

机译:头部和颈部的作用对青春期儿童颈椎正常运动的影响

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Application of cervical spine range of motion data and related anthropometric measures of the head and neck include physical therapy, product design, and computational modeling. This study utilized the Cervical Range of Motion device (CROM) to define the normal range of motion of the cervical spine for subjects five (5) through ten (10) years of age. And, the data was collected and analyzed with respect to anatomical measures such as head circumference, face height, neck length, and neck circumference. This study correlates these static anthropometric measures to the kinematic measurement of head flexion, extension, lateral extension, and rotation. An analysis using Pearson's correlation coefficient and a hypothesis test to evaluate the significance of the correlation indicated a statistically significant linear relationship between neck length and flexion r(156) = +0.16, p<0.042, neck length and lateral extension r(156) = +0.21, p<0.009, neck length and rotation r(156) = +0.17, p<0.035, neck circumference and lateral extension r(156) = -0.23, p<0.004, and head circumference and rotation r(156) = +0.21, p<0.009.
机译:颈椎的应用和颈部的动作数据和相关人体测量措施包括物理治疗,产品设计和计算建模。本研究利用宫颈范围的运动装置(CROM)来定义颈椎的正常运动范围,用于5(5)岁(10)岁以上的受试者的宫颈脊柱的运动范围。并且,相对于头圆周,面部高度,颈部长度和颈部长度等解剖测量,收集数据并分析。本研究将这些静态人力测量措施与头部屈曲,延伸,横向延伸和旋转的运动测量相关联。使用Pearson相关系数的分析和评估相关性的重要性指示颈部长度和屈曲r(156)= +0.16,P <0.042,颈部长度和横向延伸R(156)=之间的统计上显着的线性关系。 +0.21,P <0.009,颈部长度和旋转R(156)= +0.17,P <0.035,颈圆周和横向延伸R(156)= -0.23,P <0.004和头圆周和旋转R(156)= +0.21,p <0.009。

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