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首页> 外文期刊>The Journal of the Acoustical Society of America >Relationships of quantitative ultrasound parameters with cancellous bone microstructure in human calcaneus in vitro
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Relationships of quantitative ultrasound parameters with cancellous bone microstructure in human calcaneus in vitro

机译:人体跟骨定量超声参数与松质骨微结构的关系

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摘要

Ultrasound parameters (attenuation, phase velocity, and backscatter), bone mineral density (BMD), and microarchitectural features were measured on 29 human cancellous calcaneus samples in vitro. Regression analysis was performed to predict ultrasound parameters from BMD and microarchitectural features. The best univariate predictors of the ultrasound parameters were the indexes of bone quantity: BMD and bone volume fraction (BV/TV). The most predictive univariate models for attenuation, phase velocity, and backscatter coefficient yielded adjusted squared correlation coefficients of 0.69-0.73. Multiple regression models yielded adjusted correlation coefficients of 0.74-0.83. Therefore attenuation, phase velocity, and backscatter are primarily determined by bone quantity, but multiple regression models based on bone quantity plus microarchitectural features achieve slightly better predictive performance than models based on bone quantity alone.
机译:在体外对29个人类松质跟骨样品进行了超声参数(衰减,相速度和反向散射),骨矿物质密度(BMD)和微结构特征的测量。进行回归分析以根据BMD和微体系结构特征预测超声参数。超声参数的最佳单变量预测指标是骨量指标:BMD和骨体积分数(BV / TV)。衰减,相速度和反向散射系数的最具预测性的单变量模型得出的调整后平方相关系数为0.69-0.73。多元回归模型得出调整后的相关系数为0.74-0.83。因此,衰减,相速度和反向散射主要由骨骼数量决定,但是与仅基于骨骼数量的模型相比,基于骨骼数量和微体系结构特征的多个回归模型可以获得更好的预测性能。

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