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A computerized system based on an alternative pulse echo immersion technique for acoustic characterization of non-porous solid tissue mimicking materials

机译:一种基于替代脉冲回波浸没技术的计算机化系统,用于模拟材料的非多孔固体组织声学特征

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This paper discusses the development of a computerized acoustic characterization system of non-porous solid tissue mimicking materials. This system employs an alternative pulse echo immersion technique and consists of a pulser/receiver generator, a transducer used as both a transmitter and a receiver, a digital oscilloscope, and a personal computer with a custom-developed program installed. The program was developed on the LabVIEW 2012 platform and comprises two main components, a user interface and a block diagram. The user interface consists of three panels: a signal acquisition and selection panel, a display panel, and a calculation panel. The block diagram comprises four blocks: a signal acquisition block, a peak signal analysis block, an acoustic properties calculation and display block, and an additional block. Interestingly, the system can be operated in both online and offline modes. For the online mode, the measurements are performed by connecting the system with a Rigol DS2000 Series digital oscilloscope. In contrast, the measurements are carried out by processing the saved data on the computer for the offline mode. The accuracy and consistency of the developed system was validated by a KB-Aerotech Alpha Series transducer with 5 MHz center frequency and a Rigol DS2202 two-channel 200 MHz 2 GSa s(-1) digital oscilloscope, based on the measurement of the acoustic properties of three poly(methyl methacrylate) samples immersed in a medium at a temperature of (24.0 +/- 0.1) degrees C. The findings indicated that the accuracy and consistency of the developed system was exceptionally high, within a 1.04% margin of error compared to the reference values. As such, this computerized system can be efficiently used for the acoustic characterization of non-porous solid tissues, given its spontaneous display of results, user-friendly interface, and convenient hardware connection.
机译:本文讨论了仿形材料的计算机化声学表征系统的发展。该系统采用替代脉冲回波浸没技术,包括脉冲/接收器发生器,换能器用作发射器和接收器,数字示波器和安装具有定制开发程序的个人计算机。该程序是在LabVIEW 2012平台上开发的,包括两个主要组件,用户界面和框图。用户界面由三个面板组成:信号采集和选择面板,显示面板和计算面板。框图包括四个块:信号获取块,峰值信号分析块,声学属性计算和显示块,以及附加块。有趣的是,系统可以在线和离线模式运行。对于在线模式,通过将系统与RIGOL DS2000系列数字示波器连接来执行测量。相反,通过处理离线模式的计算机上的保存数据来执行测量。基于声学特性的测量,通过具有5 MHz中心频率和RIGOL DS2202双通道200MHz 2 GSA S(-1)数字示波器的KB-Aerotech Alpha系列换能器验证了开发系统的准确性和一致性。三种聚(甲基丙烯酸甲酯)样品浸入培养基中(24.0 +/- 0.1)℃的温度下。结果表明,发达系统的准确性和一致性特别高,在误差幅度下的1.04%内到参考值。因此,鉴于其自发显示结果,用户友好的界面和方便的硬件连接,可以有效地用于非多孔固体组织的声学表征的这种计算机化系统。

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