首页> 外文会议>2015 6th European Symposium on Ultrasonic Characterization of Bone >Physical models of cortical bone conditions, fabricated by a 3D printer to test for sensitivity of axial transmission technique
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Physical models of cortical bone conditions, fabricated by a 3D printer to test for sensitivity of axial transmission technique

机译:由3D打印机制造的皮质骨状况的物理模型,用于测试轴向传输技术的敏感性

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Conditions of bone health such as variations of the thickness of cortical layer, intracortical porosity and low mineralization were simulated by a series of phantoms made of hard plastics using 3D printing. The phantoms presented edge-type strips mimicking cortical layer of long bones with a known gradient of the thickness by the length. Ultrasonic testing was performed as profiling by the phantoms' length in the axial transmission mode at frequencies 75 and 500 kHz through a covering soft layer and building time-distance plots of acquired signals. The results demonstrated ability of the axial transmission technique to discriminate between different simulated bone conditions in the presence of soft layers of varied thickness, as well as alternating the wave patterns by the soft layer with its specific features at low and high frequencies. The study indicates the need to incorporate the frequency-specific soft tissue factor in the comprehensive analysis of bone condition based on temporal and attenuation parameters of ultrasound propagation.
机译:骨骼健康状况,例如皮质层厚度的变化,皮质内孔隙度和低矿化度,是通过使用3D打印的一系列由硬塑料制成的体模来模拟的。幻影呈现出边缘型条带,模仿长骨皮质层,并具有厚度随长度变化的已知梯度。超声波测试是通过模体在轴向传输模式下以75和500 kHz的频率通过覆盖的软层并建立所采集信号的时距图进行轮廓分析而进行的。结果证明了轴向传输技术能够在存在厚度变化的软层的情况下区分不同的模拟骨骼状况,以及在低频和高频下通过具有其特定特征的软层来交替波型。研究表明,需要根据超声传播的时间和衰减参数,将特定于频率的软组织因子纳入骨骼状况的综合分析中。

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