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Sensitivity of low-frequency axial transmission acoustics to axially and azimuthally varying cortical thickness: A phantom-based study

机译:低频轴向传输声学对轴向和方位角变化的皮质厚度的敏感性:基于幻像的研究

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摘要

PurposeCortical thickness (cTh) is one of the main factors determining a bone's mechanical properties, and its quantification is therefore critical for understanding and monitoring bone pathologies such as osteoporosis. Axial quantitative acoustics (ax-QA) offers a non-radiative, non-invasive method to measure cTh. Even though previous works have ascertained ax-QA's ability to measure azimuthally varying cTh, the effect of axially varying cTh remains unclear. Furthermore, previous experiments and theoretical predictions indicate that measurement of the fundamental flexural mode at low frequencies in the kHz range could increase sensitivity to cTh. However, due to the associated long wavelengths, the approximation of bone geometry as a tube could break down at such frequencies. The presented study therefore investigates a) the sensitivity of ax-QA measurements to cTh in the kHz-regime, b) the applicability of tube theory in this regime, and c) the effect of varying cTh along the long axis on the bone.Materials and methodsAxial-transmission acoustic measurements were performed at 3kHz on 14 bone phantoms with a femur-like cross-section and a) axially varying cortical thickness or b) axially and azimuthally varying cortical thickness (cTh-range: 1.5mm-7.5mm). Experimental results were compared to theoretical predictions based on an exact elastic tube theory.Results and discussionPhase velocity measurements using low-frequency ax-QA exhibited a high sensitivity to local cTh less than 4mm, albeit with a complex, not yet understood pattern. Tube theory failed to predict the wave's behavior in the kHz range, indicating that due to the corresponding long wavelengths the bone can no longer be approximated by a tube, thus requiring more faithful modelling of the bone geometry. The fact that results from both types of phantoms were similar (Pearson correlation coefficient: 0.94) further indicates that the slowly varying cTh along the bone's long axis did not strongly affect wave propagation as measured by ax-QA measurements.
机译:目的厚度(CTH)是确定骨骼机械性能的主要因素之一,因此其量化对于理解和监测骨质疏松症等骨病理至关重要。轴向定量声学(AX-QA)提供了一种测量CTH的非辐射非侵入性方法。尽管先前的作品已经确定了AX-QA测量方位角变化的CTH的能力,但轴向变化的CTH的效果仍然不清楚。此外,先前的实验和理论预测表明,在KHz范围内低频下的基本弯曲模式的测量可能会增加对CTH的敏感性。然而,由于相关的长波长,骨几何形状的近似值可以在这种频率下分解。因此,本研究研究了a)AX-QA测量对KHZ-SEGIME中的CTH的敏感性,b)管理论在该制度中的适用性,以及c)不同的CTH沿着骨骼上的长轴变化的效果。在14个骨模子上以3kHz在3kHz上进行轴向不同的皮质厚度或B)在3kHz上进行3kHz,轴向和方位角变化的皮质厚度(CTH范围:1.5mm-7.5mm)。将实验结果与基于精确的弹性管理论的理论预测进行了比较。使用低频AX-QA的结果和讨论单速度测量对局部CTH的敏感性高于4mm,尽管具有复杂的,但尚未理解的图案。管理论未能预测kHz范围内的波的行为,表明由于相应的长波长,骨不能再被管近似,因此需要更忠实的骨几何建模。两种类型的幽灵产生的事实相似(Pearson相关系数:0.94)进一步表明,沿着骨长轴的缓慢变化的CTH没有强烈影响通过AX-QA测量测量的波传播。

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