动物血浆定性定量超声系统

L. T. Molano, Y. M. Jiménez, J. Villamarín, Nylho A. Dorado, Munoz Fabian G. Munoz, L. F. Londoño
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引用次数: 0

摘要

本文介绍了一种通过超声定量评估系统的实现,该系统允许动物血浆的声学特性,在血液生物识别技术中具有潜在的应用。该系统包括一个步长为1毫米的一维电子控制器,可以在脉冲回波模式下使用中心频率为5MHz的超声场入射对血液样本进行声学检查。此外,所实现的系统结合了Matlab中计算机算法的开发,允许基于声速和频谱能量损失等声学参数的估计,使用换能器带宽(1MHz @ -3dB)的对数功率谱密度相减,对超声波背散射信号进行数字信号处理。从离心至3398 rpm的血液样本中估计声学参数与密度值、pH值和血小板浓度相关。结果表明,密度在1.040 g/ml ~ 1.051 g/ml之间、血小板浓度变化在45×103/mm3-138×103/mm3之间的样品,声速变化在1335 m/s ~ 1572 m/s之间。此外,测量结果显示,声衰减在0.21dB/cm至2.73 dB/cm之间存在细微差异。最后,定量超声系统表明,估计声传播的速度分布可以推断室温下血小板浓度的变化,在血浆质量评估中具有潜在的应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative ultrasound system for the characterization of animal blood plasma
This paper presents the implementation of a quantitative system of assessment by ultrasound, which allows the acoustic characterization of animal blood plasma, with potential applications in hematic biometric techniques. The system comprises a unidimensional electronic controller with step size 1 mm which enables the acoustic inspection of blood samples using an ultrasonic field incident with central frequency of 5MHz in pulse echo mode. Additionally, the implemented system incorporates the development of computer algorithms in Matlab allowing digital signal processing of ultrasonic backscattered signals, based on the estimation of acoustic parameters such as speed of sound and spectral energy loss, using the logarithmic power spectral density subtraction in the bandwidth of the transducer (1MHz @ -3dB). Estimating acoustic parameters from blood samples centrifuged to 3398 rpm were correlated with density values, pH and concentration of platelets. The results showed that samples with densities between 1.040 g/ml-1.051 g/ml and variations of platelet concentrations between 45×103/mm3-138×103/mm3, showed variations in sound velocity between 1335 m/s-1572 m/s. Moreover, measurements showed a sound attenuation subtle difference variations between 0.21dB/cm to 2.73 dB/cm. Finally quantitative ultrasound system shows that the estimate of velocity profiles acoustic propagation enables infer variations of platelet concentration at room temperature with potential applications in the quality assessment of blood plasma.
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