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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effects of frequency-dependent attenuation and velocity dispersion on in vitro ultrasound velocity measurements in intact human femur specimens
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Effects of frequency-dependent attenuation and velocity dispersion on in vitro ultrasound velocity measurements in intact human femur specimens

机译:频率相关衰减和速度色散对完整人类股骨标本体外超声速度测量的影响

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摘要

Numerous studies have shown that ultrasonic velocity measured in bone provides a good assessment of osteoporotic fracture risk. However, a lack of standardization of signal processing techniques used to compute the speed of sound (SOS) complicates the comparison between data obtained with different commercial devices. In this study, 38 intact femurs were tested using a through-transmission technique and SOS determined using different techniques. The resulting difference in measured SOS was determined as functions of the attenuation and the velocity dispersion. A numerical simulation was used to explain how attenuation and dispersion impact two different SOS measurements (group velocity, velocity based on the first zero crossing of the signal). A new method aimed at compensating for attenuation was devised and led to a significant reduction in the difference between SOS obtained with both signal processing techniques. A comparison between SOS and X-ray density measurements indicated that the best correlation was reached for SOS based on the first zero crossing apparently because it used a marker located in the early part of the signal and was less sensitive to multipath interference. The conclusion is that first zero crossing velocity may be preferred to group velocity for ultrasonic assessment at this potential fracture site.
机译:大量研究表明,在骨中测量超声波速度可以很好地评估骨质疏松性骨折的风险。但是,缺乏用于计算声速(SOS)的信号处理技术的标准化,使得使用不同商用设备获得的数据之间的比较变得复杂。在这项研究中,使用穿透传输技术测试了38个完整的股骨,并使用不同的技术确定了SOS。确定所测得的SOS的差异是衰减和速度色散的函数。数值模拟被用来解释衰减和色散如何影响两个不同的SOS测量(群速度,基于信号的第一个零交叉的速度)。设计了一种旨在补偿衰减的新方法,该方法可以显着减小两种信号处理技术获得的SOS之间的差异。 SOS和X射线密度测量结果之间的比较表明,基于第一个零交叉点,SOS达到了最佳相关性,这显然是因为它使用了位于信号早期的标记,并且对多径干扰不太敏感。结论是,在此潜在的骨折部位,对于超声评估,第一过零速度可能优于速度分组。

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