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Estimation of phase velocity and attenuation of visco-elastic plate with adaptive beamforming technique for cortical bone assessment

机译:用自适应波束形成技术估算粘弹性板的相速度和衰减,以评估骨皮质

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The technique of non-invasive cortical bone quality assessment using ultrasound axial transmission has attracted considerable attention. Estimating the phase velocity and the attenuation of the absorbing plate will assist the assessment. Among several techniques proposed for these purposes, many employ either a thresholding process or a peak search process. The thresholding process uses the intensity of the guided wave to distinguish the noise from the signal, but may dismiss weak intensity modes. The peak search process extracts the phase velocity and attenuation from the estimated intensity in the frequency and wavenumber domains; however, this process costs a large computational load. To overcome these difficulties, we propose a novel algorithm that uses an adaptive beamforming technique.
机译:使用超声轴向传输的非侵入性皮质骨质量评估技术引起了广泛的关注。估计相速度和吸收板的衰减将有助于评估。在为这些目的而提出的几种技术中,许多采用阈值处理或峰值搜索处理。阈值处理使用导波的强度来区分信号中的噪声,但可以消除弱强度模式。峰值搜索过程从频率和波数域中的估计强度中提取出相速度和衰减。但是,此过程需要很大的计算量。为了克服这些困难,我们提出了一种使用自适应波束成形技术的新颖算法。

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