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Inverse problems in cancellous bone: Estimation of the ultrasonic properties of fast and slow waves using Bayesian probability theory

机译:松质骨中的逆问题:使用贝叶斯概率理论估计快波和慢波的超声特性

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摘要

Quantitative ultrasonic characterization of cancellous bone can be complicated by artifacts introduced by analyzing acquired data consisting of two propagating waves (a fast wave and a slow wave) as if only one wave were present. Recovering the ultrasonic properties of overlapping fast and slow waves could therefore lead to enhancement of bone quality assessment. The current study uses Bayesian probability theory to estimate phase velocity and normalized broadband ultrasonic attenuation (nBUA) parameters in a model of fast and slow wave propagation. Calculations are carried out using Markov chain Monte Carlo with simulated annealing to approximate the marginal posterior probability densities for parameters in the model. The technique is applied to simulated data, to data acquired on two phantoms capable of generating two waves in acquired signals, and to data acquired on a human femur condyle specimen. The models are in good agreement with both the simulated and experimental data, and the values of the estimated ultrasonic parameters fall within expected ranges.
机译:通过分析由两个传播波(一个快波和一个慢波)组成的采集数据而引入的伪像可能会使松质骨的定量超声表征变得复杂,就好像只存在一个传播波一样。因此,恢复重叠的快波和慢波的超声特性可能会导致增强骨质量评估。当前的研究使用贝叶斯概率理论在快速和慢波传播模型中估计相速度和归一化宽带超声衰减(nBUA)参数。使用带有模拟退火的Markov链Monte Carlo进行计算,以近似模型中参数的边际后验概率密度。该技术适用于模拟数据,适用于能够在获取的信号中产生两个波的两个人体模型上获取的数据以及适用于人类股骨dy突标本上获取的数据。该模型与模拟和实验数据都非常吻合,并且估计的超声参数值落在预期范围内。

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