组织和液体B/A测量的广义有限振幅插入替代法

A. Panfilova, Xufei Chen, R. J. Sloun, H. Wijkstra, M. Mischi, O. Sapozhnikov
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引用次数: 1

摘要

B/A有望成为组织表征的生物标志物。此外,测量B/A可以识别生物液体中的异构体类型,可能有助于诊断某些疾病。测量B/A的标准有限振幅插入替换法有几个局限性。它假设衰减系数与频率呈线性关系,将其限制在组织应用中,并且需要靠近接收器的样品定位。在这里,我们提出了广义有限振幅插入替代方法,它允许对组织和液体进行B/A测量,并给予样品定位的自由。在这项工作中,我们给出了推导公式,并验证了实验过程。为此,对玉米油、猪油和猪肝进行了B/A测定。对于每种物质,测试了几种条件,包括源和接收器之间的不同距离,不同的样品位置和发射脉冲的幅度。在源传感器的近场范围内,较低的源压力幅值和距离与文献数据有较好的一致性。在这些条件下,测量误差分别被限制在玉米油和所考虑组织的文献值的8%和25%。没有发现样品位置对测量精度影响的明确迹象。
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The generalized finite amplitude insert-substitution method for B/A measurement of tissues and liquids
B/A holds promise as a biomarker for tissue characterization. Moreover, measuring B/A enables identifying isomer types in biological liquids, potentially aiding diagnosis of some diseases. The standard finite amplitude insert-substitution method of measuring B/A has several limitations. It assumes a linear dependency of the attenuation coefficient on frequency, limiting it to tissue applications, and necessitates sample positioning close to the receiver. Here we propose the generalized finite amplitude insert-substitution method, which allows for B/A measurement of tissues and liquids, and gives freedom in sample positioning. In this work, we present the derived formula and validate the experimental procedure. For this purpose, B/A measurements of corn oil, porcine fat and porcine liver were conducted. For each substance, several conditions were tested, including various distances between the source and the receiver, various sample positions and amplitudes of the transmitted pulses. A better agreement with literature data was found for lower source pressure amplitudes and distances within the near field of the source transducer. In these conditions, the measurement error was confined to 8% and 25% of the literature values of corn oil and the considered tissues, respectively. No clear indication of the influence of sample position on the measurement accuracy was found.
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