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High-Resolution Imaging of Dispersive Ultrasonic Guided Waves in Human Long Bones Using Regularized Radon Transforms

机译:使用正线氡变换的人类长骨中的色散超声波导波的高分辨率成像

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Ultrasound is an indispensable imaging modality to monitor soft tissues in diagnostic radiology. Research into ultrasound has resulted in technology developments and extension of its use beyond soft tissue imaging. The use of ultrasound to probe hard tissues is not yet a common practice but in recent years modest interest has been generated to use quantitative ultrasound in bone evaluation. This is due to several advantages of ultrasound over ionizing techniques: lack of ionizing radiation, sensitivity to the mechanical elasticity of bone tissues, portability, and low cost. Recent studies using axial-transmission technique have shown that ultrasonic guided waves, which propagate within cortical bone, have great potential to characterize mechanical and structural properties of the cortical waveguide. Multi-channel dispersion analysis of ultrasonic guided waves requires a reliable mean to map the data from the time-distance domain to the frequency-phase velocity domain. In this work, linear Radon transform using various regularization strategies is considered to enhance the transform focusing power to image dispersive guide-wave energies. Four forms of linear Radon solution: adjoint, damped least-squares, Cauchy-regularized, and l1-regularized Radon transform were applied to the simulated and in-vivo experimental data and the results were compared. Among the regularization strategies, the l1-regularization renders a highly-sparse solution and images dispersion energies with the best focusing resolution. The high-resolution dispersion maps allow better wave-mode discrimination and separation. The results of this study suggest the l1-regularized Radon transform as a valuable tool to image dispersive ultrasonic guided-wave energies propagating in long bones.
机译:超声是一种不可或缺的成像模型,用于监测诊断放射学中的软组织。超声波的研究导致了技术的发展和延伸超出软组织成像。超声波以探针硬组织的使用尚不是常见的做法,但近年来,已经产生了适度的兴趣以在骨髓评估中使用定量超声。这是由于超声超声电离技术的几个优点:缺乏电离辐射,对骨组织的机械弹性的敏感性,便携性和低成本。最近使用轴向传输技术的研究表明,在皮质骨内传播的超声波引导波具有很大的潜力,表征皮质波导的机械和结构性能。超声波引导波的多通道色散分析需要可靠的平均值将数据从时距域映射到频相速度域。在这项工作中,考虑使用各种正则化策略的线性氡变换,以增强变换聚焦功率对图像分散导向波能量。四种形式的线性氡溶液:伴随,阻尼最小二乘,Cauchy-正常化和L1-正规化的氡变换应用于模拟和体内实验数据,并进行了比较结果。在正则化策略中,L1-Ralalization呈现出高度稀疏的解决方案和具有最佳聚焦分辨率的图像色散能量。高分辨率分散图允许更好的波动模式辨别和分离。本研究的结果表明L1 - 正规化的氡变换为以长骨传播的图像分散超声波能量的有价值的工具。

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