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首页> 外文期刊>Ultrasound in Medicine and Biology >REFERENCE CHARACTERISATION OF SOUND SPEED AND ATTENUATION OF THE IEC AGAR-BASED TISSUE-MIMICKING MATERIAL UP TO A FREQUENCY OF 60 MHz
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REFERENCE CHARACTERISATION OF SOUND SPEED AND ATTENUATION OF THE IEC AGAR-BASED TISSUE-MIMICKING MATERIAL UP TO A FREQUENCY OF 60 MHz

机译:频率高达60 MHz的参考速度表征和基于IEC琼脂的组织模仿材料的衰减

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To support the development of clinical applications of high-frequency ultrasound, appropriate tissuemimicking materials (TMMs) are required whose acoustic properties have been measured using validated techniques. This paper describes the characterisation of the sound speed (phase velocity) and attenuation coefficient of the International Electrotechnical Commission (IEC) agar-based TMM over the frequency range 1 to 60 MHz. Measurements implemented a broadband through-transmission substitution immersion technique over two overlapping frequency ranges, with co-axially aligned 50 MHz centre-frequency transducers employed for characterisation above 15 MHz. In keeping with usual practice employed within the technical literature, thin acoustic windows (membranes) made of 12-mu m-thick Mylar protected the TMM from water damage. Various important sources of uncertainty that could compromise measurement accuracy have been identified and evaluated through a combination of experimental studies and modelling. These include TMM sample thickness, measured both manually and acoustically, and the influence of interfacial losses that, even for thin protective membranes, are significant at the frequencies of interest. In agreement with previous reports, the attenuation coefficient of the IEC TMM exhibited non-linear frequency dependence, particularly above 20 MHz, yielding a value of 0.93 +/- 0.04 dB cm(-1) MHz(-1) at 60 MHz, derived at 21 +/- 0.5 degrees C. For the first time, phase velocity, measured with an estimated uncertainty of +/- 3.1 m s(-1), has been found to be dispersive over this extended frequency range, increasing from 1541 m s(-1) at 1 MHz to 1547 m s(-1) at 60 MHz. This work will help standardise acoustic property measurements, and establishes a reference measurement capability for TMMs underpinning clinical applications at elevated frequencies. Crown Copyright (C) 2015 Published by Elsevier Inc. on behalf of World Federation for Ultrasound in Medicine & Biology.
机译:为了支持高频超声临床应用的发展,需要适当的组织模仿材料(TMM),其声学特性已使用经过验证的技术进行了测量。本文描述了在1至60 MHz频率范围内基于国际电工委员会(IEC)琼脂的TMM的声速(相速度)和衰减系数的特性。测量在两个重叠的频率范围内实施了宽带直通传输替代沉浸技术,并采用同轴对准的50 MHz中心频率换能器来表征15 MHz以上的特性。与技术文献中的常规做法保持一致,由厚度为12微米的聚酯薄膜制成的薄声窗(膜)可保护TMM免受水的损害。通过结合实验研究和建模,已经确定并评估了可能影响测量精度的各种重要不确定性来源。这些包括手动和声学测量的TMM样品厚度,以及界面损耗的影响,即使对于薄的保护膜,其影响也很重要。与以前的报告一致,IEC TMM的衰减系数表现出非线性频率依赖性,尤其是在20 MHz以上时,在60 MHz处产生0.93 +/- 0.04 dB cm(-1)MHz(-1)的值,推导在21 +/- 0.5摄氏度时。首次发现相速度以估计的+/- 3.1毫秒(-1)的不确定度在此扩展频率范围内分散,从1541毫秒( -1)在1 MHz到1547 ms(-1)在60 MHz。这项工作将有助于标准化声学性能测量,并为支持高频率临床应用的TMM建立参考测量功能。 Crown版权所有(C)2015,由Elsevier Inc.代表世界医学与生物学超声联合会发布。

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