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Ultrasound Vibration Potential measurement techniques for imaging

机译:超声振动势能成像技术

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摘要

Ultrasound Vibration Potential signals (UVP) are generated when an ultrasound wave traverses colloidal suspensions or ionic solutions and disturbs their electrical equilibrium. The potential can be measured as an electrical signal and provides information that can be used to determine characteristics of the sample. The reverse effect, where an electrical signal in a colloidal suspension generates an ultrasonic signal also occurs and is commonly termed the Electro Sonic Amplitude (ESA). Measured amplitudes of UVP signals are in the region of a few hundred nano-volts and micro-volts and therefore pose difficulties in obtaining consistent data. Low noise instrumentation and techniques are necessary to obtain reliable measurements. UVP techniques have already been used to measure sample characteristics in homogenous distributions. However the technique also shows a high contrast between different types of object samples and can be used as an imaging method. This work describes the initial instrumentation and sensing methods that have been developed for detecting UVP signals for the purpose of imaging applications and the results with laboratory phantoms.
机译:当超声波穿过胶体悬浮液或离子溶液并破坏其电平衡时,会产生超声振动势信号(UVP)。可以将电势作为电信号进行测量,并提供可用于确定样品特性的信息。在胶体悬浮液中的电信号产生超声信号的情况下,也会发生这种反向效应,通常称为电声振幅(ESA)。 UVP信号的测量幅度在几百纳伏和几微伏的范围内,因此在获取一致的数据时会遇到困难。低噪声的仪器和技术对于获得可靠的测量是必不可少的。 UVP技术已经用于测量均匀分布的样品特征。然而,该技术还显示出不同类型的对象样本之间的高对比度,并且可以用作成像方法。这项工作描述了最初的仪器和传感方法,这些方法已经开发出来用于检测UVP信号,以用于成像应用以及实验室模型的结果。

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  • 来源
    《Nuclear Engineering and Design》 |2011年第6期|p.1981-1987|共7页
  • 作者单位

    Institute of Particle Science and Engineering, School of Process, Environmental and Materials Engineering, University of Leeds, UK;

    Institute of Particle Science and Engineering, School of Process, Environmental and Materials Engineering, University of Leeds, UK;

    Institute of Particle Science and Engineering, School of Process, Environmental and Materials Engineering, University of Leeds, UK;

    Institute of Particle Science and Engineering, School of Process, Environmental and Materials Engineering, University of Leeds, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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