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Ultrasound backscatter measurements of intact human proximal femurs-Relationships of ultrasound parameters with tissue structure and mineral density

机译:完整人类近端股骨的超声反向散射测量-超声参数与组织结构和矿物质密度的关系

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Ultrasound reflection and backscatter parameters are related to the mechanical and structural properties of bone in vitro. However, the potential of ultrasound reflection and backscatter measurements has not been tested with intact human proximal femurs ex vivo. We hypothesize that ultrasound backscatter can be measured from intact femurs and that the measured backscattered signal is associated with cadaver age, bone mineral density (BMD) and trabecular bone microstructure. In this study, human femoral bones of 16 male cadavers (47.0 ± 16.1 years, range: 21-77 years) were investigated using pulse-echo ultrasound measurements at the femoral neck in the antero-posterior direction and at the trochanter major in the anteroposterior and lateromedial directions. Recently introduced ultrasound backscatter parameters, independent of cortical thickness, e.g., time slope of apparent integrated backscatter (TSAB) and mean of the backscatter difference technique (MBD) were obtained and compared with the structural properties of trabecular bone samples, extracted from the locations of ultrasound measurements. Moreover, more conventional backscatter parameters, e.g., apparent integrated backscatter (AIB) and frequency slope of apparent integrated backscatter (FSAB) were analyzed. Bone mineral density of the intact femurs was evaluated using dual energy X-ray absorptiometry (DXA). AIB and MDB measured from the femoral neck correlated significantly (p < 0.01) with the neck BMD (R2 = 0.44 and 0.45), cadaver age (R~2 = 0.61 and 0.41) and several structural parameters, e.g., bone volume fraction (R~2 = 0.33 and 0.39, p < 0.05 and p < 0.01), respectively. To conclude, ultrasound backscatter parameters, measured from intact proximal femurs, are significantly related (p < 0.05) to structural properties and mineral density of trabecular bone.
机译:超声反射和反向散射参数与体外骨骼的机械和结构特性有关。然而,超声反射和反向散射测量的潜力尚未在完整的离体人类近端股骨上进行测试。我们假设可以从完整的股骨中测量超声后向散射,并且测量到的后向散射信号与尸体年龄,骨矿物质密度(BMD)和小梁骨微结构有关。在这项研究中,使用脉冲回波超声技术在股骨颈的前后方向和转子粗隆的大转子上,对16名男性尸体的人股骨进行了研究(47.0±16.1年,范围:21-77岁)。和后向指示。获得了最近引入的超声背向散射参数,与皮质厚度无关,例如,表观整合背向散射(TSAB)的时间斜率和背向散射差异技术(MBD)的平均值,并将其与从小腿骨位置提取的小梁骨样品的结构特性进行比较超声测量。此外,分析了更常规的反向散射参数,例如,视在积分反向散射(AIB)和视在积分反向散射的频率斜率(FSAB)。使用双能X线骨密度仪(DXA)评估完整股骨的骨矿物质密度。从股骨颈测量的AIB和MDB与颈部BMD(R2 = 0.44和0.45),尸体年龄(R〜2 = 0.61和0.41)和几个结构参数(例如骨体积分数(R))显着相关(p <0.01) 〜2分别为0.33和0.39,p <0.05和p <0.01)。总之,从完整的股骨近端测量的超声反向散射参数与小梁骨的结构特性和矿物质密度显着相关(p <0.05)。

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