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Morphometry of the Pelvic Ring in Definition of Biomechanical Factors Influencing the Type of Pelvic Fracture

机译:定义骨盆骨折类型的生物力学因素定义的骨盆环形态

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摘要

The aim of the study was to supplement data on pelvic morphology and structural geometry. Using these data, a mathematical and biomechanical model was constructed. The research was divided into two parts. The first part comprised radiogrammetric analysis of pelvic morphology and geometry based on 60 AP x-rays of male and female pelvises. The spatial definition of the pelvis was given by three transverse and one sagittal diameter. Transverse diameters were measured at the level of iliac wings, at the narrowest supraacetabular portion and on the line passing through the center of both femoral heads. The fourth diameter was the height of the pelvis. Geometric properties and structure of pelvic bones and position of muscles in relation to bone elements of the pelvis were analyzed in the second part. Knowing geometric dimensions of the pelvis and the body weight, it is possible to calculate the magnitude of gravitational forces acting upon certain pelvic portions. This biomechanical model serves for simulation of operative methods of fixation and allows search for the optimal solution, which is stable enough to withstand all the forces acting upon fragments of a fractured pelvic ring.
机译:该研究的目的是补充有关骨盆形态和结构几何的数据。利用这些数据,构建了数学和生物力学模型。研究分为两部分。第一部分包括根据男性和女性骨盆的60个AP X射线对骨盆形态和几何进行放射线照相分析。骨盆的空间定义由三个横向直径和一个矢状直径给出。在diameter骨翼,最窄的髋臼上部分和穿过两个股骨头中心的线上测量横向直径。第四个直径是骨盆的高度。第二部分分析了骨盆的几何特性和结构以及肌肉相对于骨盆骨元素的位置。知道骨盆的几何尺寸和体重,就可以计算作用在某些骨盆部位的重力的大小。该生物力学模型用于模拟固定的操作方法,并允许寻找最佳解决方案,该解决方案足够稳定,可以承受作用在骨折骨盆环碎片上的所有力。

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