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Stability Analysis of the Pelvis after Type Ⅰ Resection of Iliac Tumor

机译:I骨肿瘤Ⅰ型切除术后骨盆的稳定性分析

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The purpose of this study is to analyze the pelvic stability after type Ⅰ resection of iliac tumor. Six adult cadaveric specimens were tested. The iliac subtotal resection models were established according to Ennecking's type Ⅰ resection. Markers were affixed to the key regions of the pelves. Axial loading from proximal lumbar was applied by MTS load cell in the gradient from 0N to 500N in the double feet standing state. Images in front view were obtained using CCD (Charge Coupled Device). Based on Image J software, displacements of S1 (the first sacral vertebrae) of the resected pelves and the intact pelves were calculated respectively using digital marker tracing method with center-of-mass algorithm. Serious instabilities were found in the resected pelves. The rotational movements S1 around the normal side femoral head of the resected pelvis were found. The average vertical displacement of S1 of the resected pelvis was 6.951±3.384mm under vertical load of 500 Newton, which were 8.34 times compared with the intact pelvis. The average rotational angle of S1 around the normal side femoral head of the resected pelvis was 4.055 ± 1.843°, which were 12.5 times compared with the intact pelvis. Biomechanical model of type Ⅰ resection of iliac tumor was established. Essential pelvic reconstruction must be introduced because of the serious instability of the pelvis after tumor resection. Digital marker tracing method with center-of-mass algorithm based on Image J software has good perspective for application in biomechanical research, which is a simple method with high precision.
机译:本研究的目的是分析analyze骨肿瘤Ⅰ型切除后的骨盆稳定性。测试了六个成人尸体标本。根据Ennecking的Ⅰ型切除建立established总切除模型。标记贴在骨盆的关键区域。 MTS称重传感器在双脚站立状态下以从0N到500N的梯度从腰近端施加轴向载荷。前视图的图像是使用CCD(电荷耦合器件)获得的。基于Image J软件,采用质量中心算法,采用数字标记示踪法分别计算了切开的骨盆和完整骨盆的S1(第一ver骨椎骨)的位移。在切除的骨盆中发现了严重的不稳定性。发现围绕切除的骨盆的正常侧股骨头的旋转运动S1。在500牛顿的垂直载荷下,切除的骨盆S1的平均垂直位移为6.951±3.384mm,是完整骨盆的8.34倍。切除的骨盆的正常侧股骨头周围S1的平均旋转角度为4.055±1.843°,是完整骨盆的12.5倍。建立了tumor骨肿瘤Ⅰ型切除的生物力学模型。由于肿瘤切除后骨盆严重不稳定,因此必须进行骨盆的基本重建。基于Image J软件的基于质心算法的数字标记跟踪方法在生物力学研究中具有良好的应用前景,是一种简单,高精度的方法。

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