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Validation of a computer analysis to determine 3-D rotations and translations of the rib cage in upright posture from three 2-D digital images

机译:验证计算机分析以确定来自三个二维数字图像的直立姿势的肋骨保持架的3-D旋转和平移

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摘要

Since thoracic cage posture affects lumbar spine coupling and loads on the spinal tissues and extremities, a scientific analysis of upright posture is needed. Common posture analyzers measure human posture as displacements from a plumb line, while the PosturePrint™ claims to measure head, rib cage, and pelvic postures as rotations and translations. In this study, it was decided to evaluate the validity of the PosturePrint™ Internet computer system’s analysis of thoracic cage postures. In a university biomechanics laboratory, photographs of a mannequin thoracic cage were obtained in different postures on a stand in front of a digital camera. For each mannequin posture, three photographs were obtained (left lateral, right lateral, and AP). The mannequin thoracic cage was placed in 68 different single and combined postures (requiring 204 photographs) in five degrees of freedom: lateral translation (Tx), lateral flexion (Rz), axial rotation (Ry), flexion–extension (Rx), and anterior–posterior translation (Tz). The PosturePrint™ system requires 13 reflective markers to be placed on the subject (mannequin) during photography and 16 additional “click-on” markers via computer mouse before a set of three photographs is analyzed by the PosturePrint™ computer system over the Internet. Errors were the differences between the positioned mannequin and the calculated positions from the computer system. Average absolute value errors were obtained by comparing the exact inputted posture to the PosturePrint™’s computed values. Mean and standard deviation of computational errors for sagittal displacements of the thoracic cage were Rx=0.3±0.1°, Tz=1.6±0.7 mm, and for frontal view displacements were Ry=1.2±1.0°, Rz=0.6±0.4°, and Tx=1.5±0.6 mm. The PosturePrint™ system is sufficiently accurate in measuring thoracic cage postures in five degrees of freedom on a mannequin indicating the need for a further study on human subjects.
机译:由于胸廓的姿势会影响腰椎的耦合以及脊柱组织和四肢的负荷,因此需要对直立姿势进行科学分析。常见的姿势分析仪将人体姿势测量为铅垂线的位移,而PosturePrint™声称可以测量头部,肋骨保持架和骨盆姿势的旋转和平移。在这项研究中,决定评估PosturePrint™Internet计算机系统对胸廓姿势进行分析的有效性。在大学的生物力学实验室中,在数码相机前面的架子上以不同的姿势获得了人体模型的胸廓的照片。对于每个人体模型姿势,获得三张照片(左侧,右侧和AP)。人体模型的胸廓笼以五个自由度以68种不同的单姿势和组合姿势放置(需要204张照片):横向平移(Tx),横向屈曲(Rz),轴向旋转(Ry),屈伸-(Rx)和前后翻译(Tz)。 PosturePrint™系统需要在摄影过程中将13个反射标记放置在对象(人体模型)上,并通过计算机鼠标将16个附加的“点击”标记放置在计算机上,然后由PosturePrint™计算机系统通过Internet分析三张照片。错误是定位的人体模特与计算机系统计算出的位置之间的差异。通过将准确输入的姿势与PosturePrint™的计算值进行比较,可以获得平均绝对值误差。胸廓矢状位移的计算误差的均值和标准差为Rx = 0.3±0.1°,Tz = 1.6±0.7mm,正视图位移为Ry = 1.2±1.0°,Rz = 0.6±0.4°和Tx = 1.5±0.6毫米PosturePrint™系统足够精确地测量人体模型上五个自由度的胸廓姿势,表明需要对人体进行进一步研究。

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