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首页> 外文期刊>Journal of Biomechanics >A quantitative comparison of a bone remodeling model with dual-energy X-ray absorptiometry and analysis of the inter-individual biological variability of femoral neck T-score.
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A quantitative comparison of a bone remodeling model with dual-energy X-ray absorptiometry and analysis of the inter-individual biological variability of femoral neck T-score.

机译:用双能X射线吸收法对骨重塑模型进行定量比较,并分析股骨T评分的个体间生物学变异性。

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The development of consistent procedures with the inclusion of patient-specific data is essential in the computational modeling of biological processes, in order to achieve clinical relevant data. In this work, these issues are addressed with the development of a methodology that combines the gold standard technique for bone mineral density measurement and osteoporosis diagnosis, Dual energy X-ray absorptiometry (DXA), with a computational model for bone remodeling simulation. The DXA results were divided in three samples constituted from proximal femur DXA exams of patients in different stages of bone mineral density (normal, osteopenia and osteoporosis). These results were quantitatively compared with computational model results. A correlation study was performed between femoral neck T-score and a parameter from the model to ascertain the hypothesis of adjusting the model accordingly to biological variables. The results evidenced the predictive ability of the computational model in the estimation of femoral neck bone mineral content (BMC), with a maximum relative error of 3.92%. On the other hand, a strong correlation (R=-0.862) was found between the variables in study and a mathematical relationship was obtained to estimate the range of values for a model parameter that leads to biological relevant results. The methodology developed and the results obtained represent a solid and reliable basis to further studies on bone quality, ensuring the validity of the computational model in the simulation of bone remodeling process.
机译:为了获得临床相关数据,在生物过程的计算建模中必须开发出包含患者特定数据的一致程序。在这项工作中,这些问题的解决方法是将骨矿物质密度测量和骨质疏松症诊断的金标准技术,双能X射线骨密度仪(DXA)与用于骨重塑模拟的计算模型相结合,从而解决这些问题。 DXA结果分为三个样本,分别来自不同阶段的骨矿物质密度(正常,骨质减少和骨质疏松症)患者的股骨近端DXA检查。将这些结果与计算模型结果进行定量比较。在股骨颈T分数与模型参数之间进行了相关性研究,以确定相应地根据生物学变量调整模型的假设。结果证明了该计算模型对股骨颈骨矿物质含量(BMC)的预测能力,最大相对误差为3.92%。另一方面,在研究中的变量之间发现了很强的相关性(R = -0.862),并且获得了一种数学关系式来估计导致生物学相关结果的模型参数的值范围。所开发的方法和获得的结果为进一步研究骨骼质量提供了坚实而可靠的基础,从而确保了计算模型在骨骼重塑过程仿真中的有效性。

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