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Enhanced correlation between quantitative ultrasound and structural and mechanical properties of bone using combined transmission-reflection measurement

机译:结合透射-反射测量增强定量超声与骨骼的结构和力学性能之间的相关性

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摘要

Quantitative ultrasound (QUS) is capable of predicting the principal structural orientation of trabecular bone; this orientation is highly correlated with the mechanical strength of trabecular bone. Irregular shape of bone, however, would increase variation in such a prediction, especially under human in vivo measurement. This study was designed to combine transmission and reflection modes of QUS measurement to improve the prediction for the structural and mechanical properties of trabecular bone. QUS, mechanical testing, and micro computed tomography (μCT) scanning were performed on 24 trabecular bone cubes harvested from a bovine distal femur to obtain the mechanical and structural parameters. Transmission and reflection modes of QUS measurement in the transverse and frontal planes were performed in a confined 60° angle range with 5° increment. The QUS parameters, attenuation (ATT) and velocity (UV), obtained from transmission mode, were normalized to the specimen thickness acquired from reflection mode. Analysis of covariance showed that the combined transmission-reflection modes improved prediction for the structural and Young's modulus of bone in comparison to the traditional QUS measurement performed only in the medial-lateral orientation. In the transverse plane, significant improvement between QUS and μCT was found in ATT vs bone surface density (BS/BV) (p < 0.05), ATT vs trabecular thickness (Tb.Th) (p < 0.01), ATT vs degree of anisotropy (DA) (p < 0.05), UV vs trabecular bone number (Tb.N) (p < 0.05), and UV vs Tb.Th (p < 0.001). In the frontal plane, significant improvement was found in ATT vs structural model index (SMI) (p < 0.01), ATT vs bone volume fraction (BV/TV) (p < 0.01), ATT vs BS/BV (p < 0.001), ATT vs Tb.Th (p < 0.001), ATT vs DA (p < 0.001), and ATT vs modulus (p < 0.001), UV vs SMI (p < 0.01), UV vs BV/TV (p < 0.05), UV vs BS/BV (p < 0.05), UV vs Tb.Th (p < 0.01), UV vs trabecular spacing (p < 0.05), and UV vs modulus (p < 0.01). These data suggested that the combined transmission-reflection QUS method is capable of providing information more relevant to the structural and mechanical properties of trabecular bone.
机译:定量超声(QUS)能够预测小梁骨的主要结构方向。这种方向与小梁骨的机械强度高度相关。但是,骨骼形状不规则会增加这种预测的差异,尤其是在人体体内测量的情况下。这项研究旨在结合QUS测量的透射和反射模式,以改善对小梁骨结构和力学性能的预测。对从牛股骨远端收获的24个小梁骨进行了QUS,机械测试和微计算机断层扫描(μCT)扫描,以获得机械和结构参数。 QUS测量在横向和正面的透射和反射模式是在一个限制的60°角度范围内以5°增量进行的。从透射模式获得的QUS参数,衰减(ATT)和速度(UV)被归一化为从反射模式获得的样品厚度。协方差分析表明,与仅在内侧-外侧方向进行的传统QUS测量相比,组合的透射反射模式改善了对骨骼的结构和杨氏模量的预测。在横断面上,ATT对骨骼表面密度(BS / BV)(p <0.05),ATT对小梁厚度(Tb.Th)(p <0.01),ATT对各向异性程度的影响在QUS和μCT之间有显着改善(DA)(p <0.05),UV与小梁骨数(Tb.N)(p <0.05)和UV与Tb.Th(p <0.001)。在额叶面,ATT与结构模型指数(SMI)(p <0.01),ATT与骨体积分数(BV / TV)(p <0.01),ATT与BS / BV(p <0.001)有显着改善。 ,ATT与Tb.Th(p <0.001),ATT与DA(p <0.001),ATT与模量(p <0.001),UV与SMI(p <0.01),UV与BV / TV(p <0.05), ,UV与BS / BV(p <0.05),UV与Tb.Th(p <0.01),UV与小梁间距( p <0.05)和UV与模量( p < / em> <0.01)。这些数据表明,组合的透射-反射QUS方法能够提供与小梁骨的结构和机械特性更相关的信息。

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